レーザー研究
Online ISSN : 1349-6603
Print ISSN : 0387-0200
ISSN-L : 0387-0200
レーザー解説
量子もつれ光を用いた超高分解能光断層撮影技術の開発
岡野 真之岡本 亮竹内 繁樹
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ジャーナル フリー

2016 年 44 巻 10 号 p. 663-

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Quantum technologies harness the intrinsic nature of quantum physics to beat limitations of classical methods. Recently, the application of quantum entanglement to metrology has attracted much attention. Quantum optical coherence tomography (QOCT) using two-photon interference between entangled photon pairs can overcome certain problems with classical optical coherence tomography (OCT). As the resolution of OCT becomes higher, degradation of the resolution due to dispersion becomes more critical. Here we show our work on the realization of 0.54 μm resolution two-photon interference, which surpasses the current record resolution 0.75 μm for OCT. In addition, the resolution for QOCT showed almost no change even when a 1-mm-thick water was inserted in the path of the interferometer. The results presented here represent a breakthrough for the realization of ultrahigh-resolution quantum metrology. Our work will open up possibilities for medical and biological applications.
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© 2016 一般社団法人 レーザー学会
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