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SPDC correlated photon source filtered for narrowed bandwidth using volume Bragg grating

机译:SPDC相关光子源使用体积布拉格光栅滤波以缩小带宽

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A Volume Bragg Grating (VBG) can be used to efficiently extract a narrow bandwidth, highly collimated beam from an otherwise broad spectrum beam. We use a VBG to extract a narrow bandwidth of signal spectrum from a broadband Spontaneous Parametric Down-Conversion source to optimally match the narrow detection bandwidth of our idler upconversion detector. Improved coincidence count rates and visibility can be achieved when limiting signal-spectrum detection to the narrow signal bandwidth whose photons are correlated with a narrow idler-spectrum bandwidth that has been selected by the up-conversion detector. We compare coincidence count rate and visibility for when the entire signal spectrum is detected and when the spectrum has been filtered by the VBG. We further relax the collection techniques and show that following the VBG, the coincidence count rate improves with minimal loss in visibility compared to when the entire spectrum is detected. We introduce our initial efforts at using the VBG to further narrow the signal spectrum by placing it inside a multipass cavity. Additionally, we further adapt the single photon level up-conversion spectrometer, previously developed for idler spectrum measurement, to indirectly measure the single photon level signal spectrum. We verify its capability for several different wavelength and linewidth selections.© (2012) COPYRIGHT Society of Photo-Optical Instrumentation Engineers (SPIE). Downloading of the abstract is permitted for personal use only.
机译:体积布拉格光栅(VBG)可用于从否则为宽光谱的光束中高效提取窄带宽,高度准直的光束。我们使用VBG从宽带自发参数下变频源中提取信号频谱的窄带宽,以最佳地匹配我们的惰轮上变频检测器的窄检测带宽。当将信号频谱检测限制在其光子与上转换检测器选择的狭窄空闲频谱带宽相关的窄信号带宽时,可以实现更高的符合计数率和可见度。我们比较何时检测到整个信号频谱以及何时频谱已被VBG过滤的符合率和可见性。我们进一步放宽了收集技术,并表明,与检测整个频谱相比,遵循VBG,同时计数率提高了,可见性损失最小。我们介绍了使用VBG将其放置在多通腔内以进一步缩小信号频谱的初步工作。此外,我们进一步调整了先前为闲置光谱测量而开发的单光子能级上转换光谱仪,以间接测量单光子能级信号光谱。我们验证了它在几种不同的波长和线宽选择上的功能。©(2012)版权所有,光电仪器工程师学会(SPIE)。摘要的下载仅允许个人使用。

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