Besse Jean-Claude, Reuer Kevin, Collodo Michele C, Wulff Arne, Wernli Lucien, Copetudo Adrian, Malz Daniel, Magnard Paul, Akin Abdulkadir, Gabureac Mihai, Norris Graham J, Cirac J Ignacio, Wallraff Andreas, Eichler Christopher
Department of Physics, ETH Zurich, Zurich, CH-8093, Switzerland.
Max-Planck-Institute of Quantum Optics, Hans-Kopfermann-Strasse 1, Garching, 85748, Germany.
Nat Commun. 2020 Sep 28;11(1):4877. doi: 10.1038/s41467-020-18635-x.
Sources of entangled electromagnetic radiation are a cornerstone in quantum information processing and offer unique opportunities for the study of quantum many-body physics in a controlled experimental setting. Generation of multi-mode entangled states of radiation with a large entanglement length, that is neither probabilistic nor restricted to generate specific types of states, remains challenging. Here, we demonstrate the fully deterministic generation of purely photonic entangled states such as the cluster, GHZ, and W state by sequentially emitting microwave photons from a controlled auxiliary system into a waveguide. We tomographically reconstruct the entire quantum many-body state for up to N = 4 photonic modes and infer the quantum state for even larger N from process tomography. We estimate that localizable entanglement persists over a distance of approximately ten photonic qubits.
纠缠电磁辐射源是量子信息处理的基石,并为在可控实验环境中研究量子多体物理提供了独特的机会。生成具有大纠缠长度的多模辐射纠缠态,既不是概率性的,也不限于生成特定类型的态,仍然具有挑战性。在这里,我们展示了通过将来自受控辅助系统的微波光子顺序发射到波导中,完全确定性地生成纯光子纠缠态,如簇态、GHZ态和W态。我们通过层析成像重建了多达N = 4个光子模式的整个量子多体状态,并从过程层析成像推断出更大N时的量子态。我们估计可定位纠缠在大约十个光子量子比特的距离上持续存在。