Plasma and Fusion Research
Online ISSN : 1880-6821
ISSN-L : 1880-6821
5 巻
選択された号の論文の216件中1~50を表示しています
Review Articles
  • Akihide FUJISAWA
    原稿種別: Review Articles
    2010 年 5 巻 p. 046
    発行日: 2010/12/16
    公開日: 2011/01/27
    ジャーナル フリー
    Magnetized plasma is an non-equilibrium matter rich in nonlinear phenomena; its structural formations are dominated by turbulence. This article provides a brief review of experiments and observations of phenomena occurring in turbulent plasmas, with an emphasis on the methodologies for characterizing turbulence, and visualizing the invisible structure created by turbulence and the internal couplings between the elemental waves that constitute turbulence. Zonal flows, streamers, blobs, and other phenomena are investigated by using analytical methods such as Fourier transformation, wavelet analysis, probabilistic density function analysis, bicoherence, wavelet bicoherence. Finally, the contemporary view of plasma turbulence is presented with discussion of unsolved transport issues in fusion plasmas, such as transport barrier formation and nonlocal transport.
  • Michael TENDLER
    原稿種別: Review Articles
    2010 年 5 巻 p. S1004
    発行日: 2010/03/26
    公開日: 2011/02/22
    ジャーナル フリー
    At present it is well understood that the key element in the transition physics is the origin of the strong radial electric field and suppression of the turbulence fluctuation level by a strong poloidal rotation in the E × B fields. As a result, the transport coefficients are strongly reduced at fixed places and transport barriers with steep density and temperature gradients are formed near the separatrix or the last closed flux surface (ETB) or in the core region (ITB). The key element in the transition physics is the origin of the strong radial electric field. The impact of the momentum transport is brought to light.
  • Yoshiteru SAKAMOTO, the JT-60 team
    原稿種別: Review Articles
    2010 年 5 巻 p. S1008
    発行日: 2010/03/26
    公開日: 2011/02/22
    ジャーナル フリー
    This paper reports on the integrated performance achieved in JT-60U toward the steady-state operation foreseen in the ITER and DEMO reactors. Advanced tokamak plasmas with weak shear or reversed shear have been optimized to confront critical issues such as high-beta operation with high confinement, the compatibility of high-density operation with high confinement, and long sustainment with a high non-inductive current drive fraction. As a result, high-integrated performance was achieved in both plasma regimes. For example, high-confinement reversed shear plasmas with a high bootstrap current fraction exceeding the no-wall beta limit have been obtained in the reactor relevant q95∼5.3; high values of βN∼2.7, HH98y2∼1.7, ne/nGW∼0.87, and fBS∼0.9 are simultaneously achieved with a reversed q profile with qmin∼2.3.
  • Akio KOMORI, LHD experiment group
    原稿種別: Review Articles
    2010 年 5 巻 p. S2001
    発行日: 2010/12/10
    公開日: 2011/05/17
    ジャーナル フリー
    There are various physics issues which the LHD can explore in the research field of transport studies in high temperature plasmas, research for MHD stability in high density and high beta plasma, that are crucial for a future device aimed at nuclear fusion. Physics of the confinement improved mode is discussed with a new paradigm of non-linearity, non-diffusivity and non-locality of the transport. Various MHD modes are observed such as the interchange mode and high energy particle driven modes. Magnetic island physics are intensively studied by applying a perturbation field or by controlling the magnetic shear with NBCD. The LHD also gives opportunities to extend research beyond plasma physics. Research concerning atomic processes such as a test of the collisional-radiative model and energy levels of highly charged heavy ions are also investigated using the plasma in LHD.
  • Yasuhito KIWAMOTO, Yosuke KAWAI, Yukihiro SOGA, Jun AOKI
    原稿種別: Review Articles
    2010 年 5 巻 p. S2002
    発行日: 2010/12/10
    公開日: 2011/05/17
    ジャーナル フリー
    We discuss generation processes of two distinct structures, ordered arrays of high density clumps and single-peaked macroscopic structures as observed in relaxation processes starting from non-equilibrium distributions of strongly magnetized pure electron plasmas. The two-dimensional character of the guiding-center system shows equivalence between the distributions of electron density and the vorticity in E×B flow. Observations reveal decisive role of fluctuations in the ambient electrons in assisting the formation of ordered arrays and their destruction that successively leads to next stage of ordered structures. The fluctuating parts extracted via wavelet analyses show characteristic features of spectrum and k-space dynamics in ideal 2D turbulence. Such dynamics interpreted as ideal 2D fluid actually reflect electromagnetic dynamism of charged particle subject to redistribution of potential energy and angular momentum. One extra feature of 2D vortex dynamics of electrons is the contribution of Landau-damping of collective particles' motion which conveys externally applied electromagnetic field to the bulk electrons via resonant electrons as a source of energy and momentum.
Rapid Communications
Letters
Regular Articles
  • Keiji SAWADA, Yusuke YAMADA, Takamasa MIYACHIKA, Naomichi EZUMI, Atsus ...
    原稿種別: Regular Articles
    2010 年 5 巻 p. 001
    発行日: 2010/01/25
    公開日: 2010/03/24
    ジャーナル フリー
    We have included the effect of radiation trapping in a collisional-radiative model of neutral helium atoms developed by Goto [M. Goto, JQSRT 76, 331 (2003)], which is used to determine the electron temperature and density in plasmas from visible emission line intensities of atoms. In addition to the electron temperature and density, photo-excitation events from the ground state 11S to the 21P, 31P, and 41P states per second per one atom are treated as fitting parameters to reproduce the population density obtained by spectroscopic measurement. The model has been applied to an RF plasma at Shinshu University, Japan. The electron temperature and density and the contribution of radiation trapping to the population density of excited states are evaluated.
  • Yasutomo ISHII
    原稿種別: Regular Articles
    2010 年 5 巻 p. 002
    発行日: 2010/01/25
    公開日: 2010/03/24
    ジャーナル フリー
    Effects of a non-monotonically evolving external perturbation on a plasma, that is stable against tearing modes, are numerically investigated. It is found that for a magnetic island driven by an external single-cycle magnetic perturbation, the time constants during the phases of growth and decay are different. This difference in time constants causes a finite magnetic island to form even after the external perturbation is removed. Therefore, the saturation width of a magnetic island driven by a successive applications of an external single-cycle perturbation becomes larger than the maximum magnetic island width driven by a single application of that. For a rotating plasma, the background rotation is damped as the magnetic island grows due to an external perturbation [R. Fitzpatrick, Phys. Plasmas 5, 3325(1998)]. Therefore, for a rotating plasma, the driven magnetic island can enter an explosive growth stage due to successive applications of a single-cycle perturbation even with amplitude smaller than the critical value for the onset of the rapid growth in the case of a monotonically increasing or step-function type external perturbation. These features are important in explaining the explosive growth of magnetic islands and the onset of neoclassical tearing mode due to non-monotonically growing MHD phenomena such as sawtooth, fishbones and ELM.
  • Hitoshi HOJO, Yasuyoshi YASAKA, Atsushi MASE
    原稿種別: Regular Articles
    2010 年 5 巻 p. 006
    発行日: 2010/02/10
    公開日: 2010/03/24
    ジャーナル フリー
    Surface waves were studied in cold cylindrical plasmas with axially non-uniform density profiles, and the eigenfrequencies and eigenfunctions for the transverse-magnetic modes of pure and hybrid surface waves were obtained numerically for collisional plasmas. The analysis of the wave equation takes into account the singularity caused by plasma resonance at which the wave frequency is equal to the local electron plasma frequency. It is shown that the axial eigenfunction of the pure surface mode peaks at the position of the plasma resonance layer, whereas the axial eigenfunction of the hybrid surface mode has two peaks at the plasma resonance layer and at the interface of the plasma and a quartz plate. Transverse-electric surface modes in axially non-uniform plasmas without plasma resonance are also analyzed.
  • Abdelaziz SID, Abdennasser GHEZAL, Azzeddine SOUDANI, Mohamed BEKHOUCH ...
    原稿種別: Regular Articles
    2010 年 5 巻 p. 007
    発行日: 2010/03/03
    公開日: 2010/03/24
    ジャーナル フリー
    In this paper, the Weibel instability, driven by the plasma temperature anisotropy, in the corona of high intense laser fusion plasma is studied. The unperturbed electronic distribution function, f, of the anisotropic corona is supposed to be a bi-Maxwellian. That T = T ± WO, where WO = ¼ mevO2 is the averaged electron quiver energy in the laser electric field. The first and the second anisotropies of f projected on the Legendre polynomials are calculated as a function of the scaling parameter, WO / T. The Weibel instability parameters are explicitly calculated as a function of the scaling parameter. For typical parameters of the laser pulse and the fusion plasma, it has been shown that very unstable Weibel modes, γ ≳ 1011 s−1, can be excited in the corona.
  • Hitoshi HOJO
    原稿種別: Regular Articles
    2010 年 5 巻 p. 008
    発行日: 2010/02/24
    公開日: 2010/03/24
    ジャーナル フリー
    We study the flute-mode stability of quadrupole-anchored tandem mirror plasmas. The present analysis is based on Newcomb's Lagrangian density with an assumption of small Larmor radius of ions for paraxial approximation. A radial eigenmode equation for flute perturbations is derived without an eikonal approximation in flux coordinates, where effects of E × B plasma rotation due to an ambipolar electric field are considered. The obtained eigenmode equation is applicable to a mode with an arbitrary azimuthal mode number and can describe interchange, E × B rotational, and Kelvin-Helmholtz modes driven by the shear effect of E × B plasma rotation. A quadratic dispersion equation in perturbation frequency ω is derived based on a simplified cylindrical plasma model and is used to discuss the flute stability of quadrupole-anchored GAMMA 10 tandem mirror plasmas, where the anchor beta required for plasma stability is calculated for the m = 1 and 2 modes for different values of central-cell ambipolar potential.
  • Yugo OSAKA, Noriyuki KOBAYASHI, M. A. RAZZAK, Noriyasu OHNO, Shuichi T ...
    原稿種別: Regular Articles
    2010 年 5 巻 p. 010
    発行日: 2010/03/29
    公開日: 2010/04/27
    ジャーナル フリー
    Oxy-combustion generates a high temperature field (above 3000 K), which is applied to next generation power plants and high temperature industrial technologies because of N2 free processes. However, the combustion temperature is so high that the furnace wall may be fatally damaged. In addition, it is very difficult to control the heat flux and chemical species' concentrations because of rapid chemical reactions. We have developed a new method for controlling the flame by electromagnetic force on this field. In this paper, we experimentally investigated the power coupling between the premixed oxy-combustion with methane and radio frequency (RF) power through the induction coil. By optimizing the power coupling, we observed that the flame can absorb RF power up to 1.5 kW. Spectroscopic measurements also showed an increase in the emission intensity from OH radicals in the flame, indicating improved combustibility.
  • Shinichiro TODA, Kimitaka ITOH, Nobuyoshi OHYABU
    原稿種別: Regular Articles
    2010 年 5 巻 p. 011
    発行日: 2010/03/29
    公開日: 2010/04/27
    ジャーナル フリー
    A unified transport model is proposed to study the physical mechanism for the formation of electron internal transport barriers (e-ITB) in helical plasmas and internal diffusion barriers (IDB) observed in the Large Helical Device (LHD). An e-ITB can be predicted with the effect of zonal flows (ZFs) in the low collisional regime when the radial variation in particle turbulent diffusivity is included. The transport analysis in this article shows that particle fueling induces IDB formation when the unified transport model is used in the high collisional regime. After particle fueling, a steep density gradient forms. To examine the density limit for the IDB in helical toroidal plasmas, the effect of radiation loss is included in a set of transport equations.
  • Masayuki TOKITANI, Naoaki YOSHIDA, Kazutoshi TOKUNAGA, Hajime SAKAKITA ...
    原稿種別: Regular Articles
    2010 年 5 巻 p. 012
    発行日: 2010/04/07
    公開日: 2010/04/27
    ジャーナル フリー
    The neutral beam injection facility in the National Institute of Advanced Industrial Science and Technology was used to irradiate a polycrystalline tungsten specimen with high energy and high flux helium and hydrogen particles. The incidence energy and flux of the beam shot were 25 keV and 8.8 × 1022 particles/m2 s, respectively. The duration of each shot was approximately 30 ms, with 6 min intervals between each shot. Surface temperatures over 1800 K were attained. In the two cases of helium irradiation, total fluence of either 1.5 × 1022 He/m2 or 4.0 × 1022 He/m2 was selected. In the former case, large sized blisters with diameter of 500 nm were densely observed. While, the latter case, the blisters were disappeared and fine nanobranch structures appeared instead. Cross-sectional observations using a transmission electron microscope (TEM) with the focused ion beam (FIB) technique were performed. According to the TEM image, after irradiation with a beam shot of total fluence 4.0 × 1022 He/m2 , there were very dense fine helium bubbles in the tungsten of sizes 1-50 nm. As the helium bubbles grew the density of the tungsten matrix drastically decreased as a result of void swelling. These effects were not seen in hydrogen irradiation case.
  • Olaf GRULKE, Thomas WINDISCH, Christian BRANDT, Stefan ULLRICH, Thomas ...
    原稿種別: Regular Articles
    2010 年 5 巻 p. 013
    発行日: 2010/05/12
    公開日: 2010/06/30
    ジャーナル フリー
    Experimental investigations of the evolution of the dynamics of drift wave turbulence in a linear high-density helicon plasma device are presented. The turbulent density fluctuations in the plasma edge are characterized by large intermittent events caused by radially propagating turbulent structures, which are formed in the radial plasma density region due to increased cross-field transport by a quasi-coherent drift wave mode. Similar to coherent drift wave modes the turbulent structures are correlated with fluctuating parallel currents. The role of fluctuating currents parallel to the ambient magnetic field in the evolution of coherent drift wave modes and drift turbulence is highlighted by investigations of the interaction of drift wave fluctuations with externally driven currents. Frequency pulling of coherent drift wave modes over a frequency range of up to 30% of the natural drift wave frequency is demonstrated. Furthermore, the drive of mode-selective current patterns allow for complete synchronization of drift wave turbulence and consequently leads to a strong reduction of the associated fluctuation-induced transport.
  • Atsushi KOJIMA, Kensaku KAMIYA, Takaaki FUJITA, Hirotaka KUBO, Harukaz ...
    原稿種別: Regular Articles
    2010 年 5 巻 p. 015
    発行日: 2010/04/28
    公開日: 2010/06/30
    ジャーナル フリー
    A lithium beam probe (LiBP) has been developed for the measurement of electron density profiles with highly spatial and temporal resolutions in JT-60U. Using an electron beam heating ion source with a capability of 10 mA extraction, a 5.5 mA beam has been injected to the plasmas. It corresponds to the equivalent neutral beam current of 2 mA. A spectrum width of the beam emission has been small enough to separate Zeeman splitting. By use of the LiBP, time evolutions of pedestal density profiles during type I and grassy edge localized modes (ELMs) have been obtained for the first time. After a type I ELM crash, the drop of the line-integrated density measured by an interferometer delays by 2 ms later than that of the pedestal density. Comparing the line-integrated density to the line integration of the edge density profile measured by the LiBP, it is found that the recovery from the type I ELM crash is correlated with the reduction of core plasma density. As for grassy ELMs, grassy ELMs have smaller density crashes than that of type I ELMs, which is mainly derived from the narrower ELM affected area.
  • Masanori NUNAMI, Tomo-Hiko WATANABE, Hideo SUGAMA
    原稿種別: Regular Articles
    2010 年 5 巻 p. 016
    発行日: 2010/05/07
    公開日: 2010/06/30
    ジャーナル フリー
    A new gyrokinetic Vlasov simulation code, GKV-X, is developed for investigating the turbulent transport in magnetic confinement devices with non-axisymmetric configurations. Effects of the magnetic surface shapes in three-dimensional equilibrium obtained from the VMEC code are accurately incorporated. Linear simulations of ion temperature gradient (ITG) instabilities and zonal flows in the Large Helical Device (LHD) [O. Motojima, N. Oyabu, A. Komori et al., Nucl. Fusion 43, 1674 (2003)] configuration are carried out by the GKV-X code as benchmark tests against the GKV code [T.-H. Watanabe and H. Sugama, Nucl. Fusion 46, 24 (2006)]. For high poloidal wavenumbers, the frequency, growth rate, and mode structure of the ITG instability are influenced by the VMEC geometrical data such as the metric tensor components of the Boozer coordinates, while the difference between the zonal flow responses obtained by the GKV and GKV-X codes is found to be small in the core LHD region.
  • Paolo ZANCA
    原稿種別: Regular Articles
    2010 年 5 巻 p. 017
    発行日: 2010/05/25
    公開日: 2010/06/30
    ジャーナル フリー
    The Intelligent Shell scheme, where a grid of active coils counteracts in a feedback scheme the measurements provided by an identical grid of sensors, has shown some limitations in the control of the dynamo tearing modes in RFX-mod. The origin of the problem is the aliasing on the measurements coming from the high periodicity sideband harmonics produced by the discrete nature of the active coils. A more efficient feedback on tearing modes is obtained by removing the sidebands from the measurements, thereby counteracting the true tearing Fourier modes. In this scheme, named Clean-Mode-Control, the sidebands are computed in real time from the coils currents using the cylindrical geometry approximation. The Clean-Mode-Control significantly alleviates the wall-locking of tearing modes in RFX-mod, giving the possibility of operating at a plasma current (1.5 MA) never reached before in a RFP machine. These features are well explained by a MHD model describing the tearing mode dynamic under the viscous torque due to the fluid motion and the electromagnetic torques produced by the feedback, the conductive structures surrounding the plasma and the non-linear interaction between the different modes [P. Zanca, Plasma Phys. Control. Fusion 51, No. 1, 015006 (2009)]. Here some new results obtained with this model are discussed. In particular we will show that the edge radial field control improves by reducing the ratio between the delay introduced by the digital acquisition of the measurements and the time constant of the shell that contains the plasma. In this formulation the active coils are assumed to be located outside the shell.
  • Hiroki HASEGAWA, Tetsuya SATO
    原稿種別: Regular Articles
    2010 年 5 巻 p. 020
    発行日: 2010/06/04
    公開日: 2010/06/30
    ジャーナル フリー
    An open system one-dimensional electrostatic particle code that adopts the new constant current generator model has been developed. Using this new model, we have been able to study various phenomena at large electron drift velocities, where the original model is not applicable. In this new model, the contribution of the ion flux, which is not considered in the original model, is added into the electric current. By examining the code, we find that the result in a case where the electron drift velocity is smaller than the electron thermal velocity is similar to that of a previous study, which showed double layer creation as a result of ion-acoustic instability. We also present the results of simulations of an electron drift velocity comparable to or larger than the electron thermal velocity.
  • Goshi YAMADA, Yuji NAKAMURA, Katsumi KONDO
    原稿種別: Regular Articles
    2010 年 5 巻 p. 021
    発行日: 2010/06/14
    公開日: 2010/06/30
    ジャーナル フリー
    Instabilities in low beta l = 2 heliotron plasmas with peaked toroidal current density profiles are investigated using resistive reduced magnetohydrodynamic equations. Such heliotron plasmas can have a nonmonotonic rotational transform ῑ profile with two ῑ = 2/3 rational surfaces. When the distance between the resonant surfaces is large, resistive instabilities can be found. Current-driven ideal modes with larger growth rates appear when the minimum of the rotational transform becomes just above the rational number 2/3 and there is no resonant surface. The existence of this non-resonant mode is explained by the expression for the current-driven term of the plasma potential energy.
  • Kun YAO, Yanping ZHAO
    原稿種別: Regular Articles
    2010 年 5 巻 p. 025
    発行日: 2010/07/09
    公開日: 2011/01/27
    ジャーナル フリー
    In fast wave current drive, fast waves accelerate resonant electrons in the direction parallel to the static magnetic field, causing parallel velocity to increase. The trajectory of a trapped resonant electron is calculated by computer code in which fast wave induced diffusion in velocity space is accounted for by a quasi-linear operator. Simulations show that the orbit of a trapped resonant electron transits from trapped to passing in some cases, reducing the effect of trapped electrons on current drive and improving current-drive efficiency. We determined the conditions under which this type of transition occurs.
  • Aaron FROESE, Tomonori TAKIZUKA, Masatoshi YAGI
    原稿種別: Regular Articles
    2010 年 5 巻 p. 026
    発行日: 2010/08/02
    公開日: 2011/01/27
    ジャーナル フリー
    Fluid models are not generally applicable to fusion edge plasmas without external provision of kinetic factors: closure parameters and boundary conditions inside the sheath region. We explain the PARASOL-1D simulation, a particle-in-cell code with a binary collision Monte-Carlo model, and use it to determine four kinetic factors commonly needed in fluid codes. These are the electron and ion heat flux limiting factors, αe and αi, the ion adiabatic index, γA, and the electron and ion temperature anisotropy, T/T. We survey these factors over a wide range of collisionalities and find that, as predicted, the conductive heat flux is accurately described by the Spitzer-Härm expression in the collisional limit and asymptotes to a constant value in the collisionless limit. However, unique behavior occurs in the weakly collisional regime when the ratio of the mean free path to connection length is 0.1 < λmfp/L< 10, when the SOL is between the conduction- and sheath-limited regimes. We find that αe can peak, becoming larger than the collisionless limit, γA is less than unity, and only the ions are anisotropic. The effects of electron energy radiation and Langevin heating are explored. Finally, the strong deviations of the energy distribution function from Maxwellian in the weakly collisional and collisionless regimes are explained.
  • Ryosuke SEKI, Yutaka MATSUMOTO, Yasuhiro SUZUKI, Kiyomasa WATANABE, Ki ...
    原稿種別: Regular Articles
    2010 年 5 巻 p. 027
    発行日: 2010/08/02
    公開日: 2011/01/27
    ジャーナル フリー
    A new Monte Carlo code based on particle tracing using real coordinates has been developed to properly treat the re-entering particles that repeatedly pass in and out of the last closed flux surface (LCFS). The particle loss due to the charge-exchange reaction has also been taken into account in this code. We apply this new code to the analysis of high-energy particles produced by tangential neutral beams (NBs) of the large helical device (LHD). It is confirmed that reasonable solutions of distribution functions are obtained for particles produced by the tangential-NBs. It is also confirmed that the effect of the particle orbit and the charge-exchange loss on the distribution function is properly included. The shapes of the distribution functions of particles, produced by the tangential-NBs in two temperature cases (1 keV and 0.1 keV), are the same. It is found that the re-entering particles play an important role in the analyses of the distribution function of particles produced by the NBs.
  • Atsushi IWAMAE, Atsushi SAKAUE, Nobuhiro NESHI, Jun YANAGIBAYASHI, Mas ...
    原稿種別: Regular Articles
    2010 年 5 巻 p. 032
    発行日: 2010/08/27
    公開日: 2011/01/27
    ジャーナル フリー
    The behavior of hydrogen neutral particles in and around the ergodic layer of Large Helical Device plasmas has been investigated through Hα emission spectral line profiles using plasma polarization spectroscopy (PPS). The PPS technique enables us to quantitatively evaluate emission locations, atomic temperatures and velocity components along the line-of-sight (LOS) for both inner and outer peripheral regions. The emission locations and the LOS components of atomic velocities are determined by varying the magnetic field axis Rax from 3.60 m to 4.00 m, shot by shot. The high intensity region of Hα emissions is localized in the inner ergodic layer for the inward configuration. With an increase in Rax, the high intensity region of Hα emission moves outward.
  • Satoshi YAMAMOTO, David PRETTY, Boyd BLACKWELL, Kazunobu NAGASAKI, Hir ...
    原稿種別: Regular Articles
    2010 年 5 巻 p. 034
    発行日: 2010/10/01
    公開日: 2011/01/27
    ジャーナル フリー
    Data mining techniques, which automatically extract useful knowledge from large datasets, are applied to multichannel magnetic probe signals of several helical plasmas in order to identify and classify MHD instabilities in helical plasmas. This method is useful to find new MHD instabilities as well as previously identified ones. Moreover, registering the results obtained from data mining in a database allows us to investigate the characteristics of MHD instabilities with parameter studies. We introduce the data mining technique consisted of pre-processing, clustering and visualizations using results from helical plasmas in H-1 and Heliotron J. We were successfully able to classify the MHD instabilities using the criterion of phase differences of each magnetic probe and identify them as energetic-ion-driven MHD instabilities using parameter study in Heliotron J plasmas.
  • Byron J. PETERSON, Evgeny A. DRAPIKO, Dongcheol SEO, Naoko ASHIKAWA
    原稿種別: Regular Articles
    2010 年 5 巻 p. 035
    発行日: 2010/10/01
    公開日: 2011/01/27
    ジャーナル フリー
    In the imaging bolometer a thin metal foil converts plasma radiated power to infrared radiation measured by an infrared camera. Calibration of the foil provides information on its sensitivity, which is helpful in selecting the best foil material. In this study thermal properties of submicron Au and Pt foils are investigated by heating the foils with a chopped HeNe laser beam (∼20 mW) and observing the temperature change, ΔT, and thermal time constant, τ, of the foil temperature. Assuming that the foil cooling is dominated by diffusion, we can compare the relative sensitivities of the foils by comparing the ratio of the thermal diffusivity to the thermal conductivity of the foil, κ/k, to the ratio ΔT/τ. The results indicate that Pt is more than 9 times more sensitive than Au even though standard thermal properties indicate that Au should be slightly (14%) more sensitive than Pt. This inconsistency indicates that the IR radiation is dominant over diffusion in the foil cooling. In that case the sensitivity should be evaluated by 1/k ∼ ΔT, which indicates that Pt is 8 times more sensitive than Au, while the ratio of thermal conductivities indicates that it should be only 4 times more sensitive.
  • Akihiko ISAYAMA, Go MATSUNAGA, Yasutomo ISHII, Yoshiteru SAKAMOTO, Shi ...
    原稿種別: Regular Articles
    2010 年 5 巻 p. 037
    発行日: 2010/10/06
    公開日: 2011/01/27
    ジャーナル フリー
    This paper describes the dependence of the rotation frequency of an m/n = 2/1 neoclassical tearing mode (NTM) on its magnetic island width in JT-60U (m and n are the poloidal and toroidal mode numbers, respectively). Throughout the experiments, the island width is actively controlled by changing the location of the electron cyclotron current drive (ECCD), based on the fact that aligned ECCD and misaligned ECCD make the NTM islands shrink and grow, respectively. The NTM frequency was found to gradually decrease with the increasing island width. While the frequency is 5.5 kHz for zero island width, it is 3 kHz for the full island width of about 15% of the plasma minor radius. Also, the mode frequency suddenly decreases (typically by 80%) shortly after the misaligned ECCD, during which the increment in the island width is only less than 10%. A sudden increase in the mode frequency is observed shortly after the ECCD turnoff, which is nearly the reverse process of the sudden decrease, but with a hysteresis in the island width at which downward and upward frequency changes occur. The downward frequency change occurs when the frequency decreases to about half of that without the NTM.
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