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非相干变频转换实现室温下红外单光子源
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作者 江萍 郭蒙蒙 +1 位作者 Tim Schroeder oliver benson 《红外与激光工程》 EI CSCD 北大核心 2014年第11期3709-3712,共4页
纳米金刚石中的NV-center(Nitrogen-Vacancy center)是目前室温下具有高发射率和稳定性的可见光波段单光子源,而如何实现及优化红外单光子源则是未来实现量子信息和量子通信应用的一大挑战。介绍了一种近期提出的实现红外单光子源的新... 纳米金刚石中的NV-center(Nitrogen-Vacancy center)是目前室温下具有高发射率和稳定性的可见光波段单光子源,而如何实现及优化红外单光子源则是未来实现量子信息和量子通信应用的一大挑战。介绍了一种近期提出的实现红外单光子源的新型机制。该方法以金刚石中的NV-center作为可见光波段的单光子源,利用非相干变频转换实现室温下近红外波段稳定、无闪烁的单光子源。具体的实施方案为在中空芯光子晶体光纤中选择性地填充含有量子点的溶液,以可见光波段的单光子源作为激励源,选择合适的量子点即可得到红外波段的单光子源。中空芯光子晶体光纤保证了较高的单光子吸收效率以及荧光收集效率。该方案的实施在理论上可以达到26%的转换效率,而初步的实验得到了0.1%的转换效率。进一步分析了一些影响转换效率的因素,并提出了一些解决方案。 展开更多
关键词 单光子源 红外 中空芯光子晶体光纤
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Coherent interaction of atoms with a beam of light confined in a light cage 被引量:1
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作者 Flavie Davidson-Marquis Julian Gargiulo +8 位作者 Esteban Gómez-López Bumjoon Jang Tim Kroh Chris Müller Mario Ziegler Stefan A.Maier Harald Kübler Markus A.Schmidt oliver benson 《Light(Science & Applications)》 SCIE EI CAS CSCD 2021年第7期1247-1256,共10页
Controlling coherent interaction between optical fields and quantum systems in scalable,integrated platforms is essential for quantum technologies.Miniaturised,warm alkali-vapour cells integrated with on-chip photonic... Controlling coherent interaction between optical fields and quantum systems in scalable,integrated platforms is essential for quantum technologies.Miniaturised,warm alkali-vapour cells integrated with on-chip photonic devices represent an attractive system,in particular for delay or storage of a single-photon quantum state.Hollow-core fibres or planar waveguides are widely used to confine light over long distances enhancing light-matter interaction in atomic-vapour cells.However,they suffer from inefficient filling times,enhanced dephasing for atoms near the surfaces,and limited light-matter overlap.We report here on the observation of modified electromagnetically induced transparency for a non-diffractive beam of light in an on-chip,laterally-accessible hollow-core light cage.Atomic layer deposition of an alumina nanofilm onto the light-cage structure was utilised to precisely tune the high-transmission spectral region of the light-cage mode to the operation wavelength of the atomic transition,while additionally protecting the polymer against the corrosive alkali vapour.The experiments show strong,coherent light-matter coupling over lengths substantially exceeding the Rayleigh range.Additionally,the stable non-degrading performance and extreme versatility of the light cage provide an excellent basis for a manifold of quantum-storage and quantumnonlinear applications,highlighting it as a compelling candidate for all-on-chip,integrable,low-cost,vapour-based photon delay. 展开更多
关键词 VAPOUR INTERACTION QUANTUM
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