论文标题

高性能光子相关测量的平台

A platform for high performance photon correlation measurements

论文作者

Zadeh, Iman Esmaeil, Los, Johannes W. N., Gourgues, Ronan B. M., Chang, Jin, Elshaari, Ali W., Zichi, Julien, van Staaden, Yuri J., Swens, Jeroen, Kalhor, Nima, Guardiani, Antonio, Meng, Yun, Zou, Kai, Dobrovolskiy, Sergiy, Fognini, Andreas W., Schaart, Dennis R., Dalacu, Dan, Poole, Philip J., Reimer, Michael E., Hu, Xiaolong, Pereira, Silvania F., Zwiller, Val, Dorenbos, Sander N.

论文摘要

广泛的科学和工业学科需要在非常低的光水平上进行精确的光学测量。在此类实验中,结合高效率和高时间分辨率的单光子检测器至关重要。通过使用NBTIN(8-11 \,nm)的相对较厚的膜,并改善超导纳米纳米局单光子探测器(SNSPD)的纳米结构的图案保真度,我们制造的设备证明了与先前报道的效率和时间分辨率组合相结合的所有先前报道的性能。我们的发现证明,按照几种纳米的顺序,纳米线宽度的微小变化可能会导致对其时间反应的重大惩罚。在解决这些问题时,我们始终达到高度分辨率(最佳设备7.7 \,PS,其他设备$ \ sim $ 10-16 \,ps,ps),在780-1000 \,NM,NM,以及在电信频带(1310-1550)中,在780-1000 \,NM的波长范围内,具有较高的系统检测效率($ 80-90 \%$)。使用较厚的薄膜使我们能够制造具有均匀像素性能的大型多像素设备。我们首先制造并表征了$ 100 \ times100 \,μm^2 $ 16像素探测器,显示单个像素之间的变化很小。此外,为了展示我们平台的功能,我们制造和表征了4像素多模纤维耦合探测器,并在纳米级量子点上进行了光子相关实验,导致$ g^2(0)$值低于0.04。多像素探测器减轻了对梁的需求,并且可用于与量子光学领域的有前途前景的高阶相关性,而且在生物成像的应用中,例如荧光显微镜和正电子发射层析成像。

A broad range of scientific and industrial disciplines require precise optical measurements at very low light levels. Single-photon detectors combining high efficiency and high time resolution are pivotal in such experiments. By using relatively thick films of NbTiN (8-11\,nm) and improving the pattern fidelity of the nano-structure of the superconducting nanowire single-photon detectors (SNSPD), we fabricated devices demonstrating superior performance over all previously reported detectors in the combination of efficiency and time resolution. Our findings prove that small variations in the nanowire width, in the order of a few nanometers, can lead to a significant penalty on their temporal response. Addressing these issues, we consistently achieved high time resolution (best device 7.7\,ps, other devices $\sim$10-16\,ps) simultaneously with high system detection efficiencies ($80-90\%$) in the wavelength range of 780-1000\,nm, as well as in the telecom bands (1310-1550\,nm). The use of thicker films allowed us to fabricate large-area multi-pixel devices with homogeneous pixel performance. We first fabricated and characterized a $100\times100\, μm^2$ 16-pixel detector and showed there was little variation among individual pixels. Additionally, to showcase the power of our platform, we fabricated and characterized 4-pixel multimode fiber-coupled detectors and carried out photon correlation experiments on a nanowire quantum dot resulting in $g^2(0)$ values lower than 0.04. The multi-pixel detectors alleviate the need for beamsplitters and can be used for higher order correlations with promising prospects not only in the field of quantum optics, but also in bio-imaging applications, such as fluorescence microscopy and positron emission tomography.

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