Ogawa Kazuhisa, Okazaki Takumi, Kobayashi Hirokazu, Nakanishi Toshihiro, Tomita Akihisa
Opt Express. 2021 Jun 21;29(13):19403-19416. doi: 10.1364/OE.423969.
The large capacity and robustness of information encoding in the temporal mode of photons is important in quantum information processing, in which characterizing temporal quantum states with high usability and time resolution is essential. We propose and demonstrate a direct measurement method of temporal complex wavefunctions for weak light at a single-photon level with subpicosecond time resolution. Our direct measurement is realized by ultrafast metrology of the interference between the light under test and self-generated monochromatic reference light; no external reference light or complicated post-processing algorithms are required. Hence, this method is versatile and potentially widely applicable for temporal state characterization.
光子时间模式下信息编码的大容量和稳健性在量子信息处理中很重要,其中以高可用性和时间分辨率表征时间量子态至关重要。我们提出并演示了一种用于单光子水平弱光的具有亚皮秒时间分辨率的时间复波函数直接测量方法。我们的直接测量是通过对被测光与自生成单色参考光之间的干涉进行超快计量来实现的;无需外部参考光或复杂的后处理算法。因此,该方法具有通用性,可能广泛适用于时间状态表征。