Lam Billy, ElKabbash Mohamed, Zhang Jihua, Guo Chunlei
The Institute of Optics, University of Rochester, Rochester, New York 14627, USA.
Research (Wash D C). 2020 Jun 15;2020:2421017. doi: 10.34133/2020/2421017. eCollection 2020.
Reading quantum information of single photons is commonly realized by quantum tomography or the direct (weak) measurement approach. However, these methods are time-consuming and face enormous challenges in characterizing single photons from an ultrafast light source due to the stringent temporal mode matching requirements. Here, we retrieve the spatial wavefunction of indistinguishable single photons from both a continuous wave source and a femtosecond light source using a self-referencing interferometer. Our method only requires nine ensemble-averaged measurements. This technique simplifies the measurement procedure of single-photon wavefunction and automatically mode matches each self-interfering single photon temporally, which enables the measurement of the spatial wavefunction of single photons from an ultrafast light source.
读取单光子的量子信息通常通过量子层析成像或直接(弱)测量方法来实现。然而,由于严格的时间模式匹配要求,这些方法耗时且在表征来自超快光源的单光子时面临巨大挑战。在此,我们使用自参考干涉仪从连续波源和飞秒光源中检索不可区分的单光子的空间波函数。我们的方法仅需要九次系综平均测量。该技术简化了单光子波函数的测量过程,并在时间上自动对每个自干涉单光子进行模式匹配,从而能够测量来自超快光源的单光子的空间波函数。