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Broadband biphoton generation and statistics of quantum light in the UV-visible range in an AlGaN microring resonator

机译:AlGaN微环谐振器中宽带双光子的产生和紫外可见范围内的量子光统计

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摘要

We present a physical investigation on the generation of correlated photon pairs that are broadly spaced in the ultraviolet (UV) and visible spectrum on a AlGaN/AlN integrated photonic platform which is optically transparent at these wavelengths. Using spontaneous four wave mixing (SFWM) in an AlGaN microring resonator, we show design techniques to satisfy the phase matching condition between the optical pump, the signal, and idler photon pairs, a condition which is essential and is a key hurdle when operating at short wavelength due to the strong normal dispersion of the material. Such UV-visible photon pairs are quite beneficial for interaction with qubit ions that are mostly in this wavelength range, and will enable heralding the photon-ion interaction. As a target application example, we present the systematic AlGaN microresonator design for generating signal and idler photon pairs using a blue wavelength pump, while the signal appears at the transition of ytterbium ion (171Yb+, 369.5 nm) and the idler appears in the far blue or green range. The photon pairs have minimal crosstalk to the pump power due to their broad spacing in spectral wavelength, thereby relaxing the design of on-chip integrated filters for separating pump, signal and idler.
机译:我们提出了对相关光子对的生成的物理研究,该对光子对在AlGaN / AlN集成光子平台上在这些波长下是光学透明的,在紫外(UV)和可见光谱中分布较宽。在AlGaN微环谐振器中使用自发四波混频(SFWM),我们展示了满足光泵浦,信号和闲置光子对之间的相位匹配条件的设计技术,该条件是必不可少的,并且是在200MHz时工作的主要障碍。短波长归因于材料的强法向色散。这样的紫外线可见光子对非常有利于与大多数在此波长范围内的量子位离子相互作用,并使光子离子相互作用成为可能。作为目标应用示例,我们介绍了系统的AlGaN微谐振器设计,该设计可使用蓝色波长泵浦产生信号和闲置光子对,而信号出现在离子的跃迁处( 171 Yb + (369.5 nm),并且惰轮出现在深蓝色或绿色范围内。由于光子对在光谱波长中的宽间隔,它们对泵浦功率的串扰最小,从而放松了用于分离泵浦,信号和惰轮的片上集成滤波器的设计。

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