Bouchard Frédéric, Koutný Dominik, Hufnagel Felix, Hradil Zdeněk, Řeháček Jaroslav, Teo Yong-Siah, Ahn Daekun, Jeong Hyunseok, Sánchez-Soto Luis L, Leuchs Gerd, Karimi Ebrahim
Opt Express. 2019 Jun 24;27(13):17426-17434. doi: 10.1364/OE.27.017426.
The ability to completely characterize the state of a system is an essential element for the emerging quantum technologies. Here, we present a compressed-sensing-inspired method to ascertain any rank-deficient qudit state, which we experimentally encode in photonic orbital angular momentum. We efficiently reconstruct these qudit states from a few scans with an intensified CCD camera. Since it only requires a small number of intensity measurements, our technique provides an easy and accurate way to identify quantum sources, channels, and systems.
能够完全表征系统状态是新兴量子技术的一个基本要素。在此,我们提出一种受压缩感知启发的方法来确定任何秩亏的量子位状态,我们在光子轨道角动量中对其进行实验编码。我们通过使用增强型电荷耦合器件相机进行几次扫描,有效地重建了这些量子位状态。由于它只需要少量的强度测量,我们的技术提供了一种简单而准确的方法来识别量子源、信道和系统。