Generation of heralded optical `Schroedinger cat' states by photon-addition
Abstract
Optical "Schr\"odinger cat" states, the non-classical superposition of two quasi-classical coherent states, serve as a basis for gedanken experiments testing quantum physics on mesoscopic scales and are increasingly recognized as a resource for quantum information processing. Here, we report the first experimental realization of optical "Schr\"odinger cats" by adding a photon to a squeezed vacuum state, so far only photon-subtraction protocols have been realized. Photon-addition gives us the advantage of using heralded signal photons as experimental triggers, and we can generate "Schr\"odinger cats" at rates exceeding counts per second; at least one order of magnitude higher than all previously reported realizations. Wigner distributions with pronounced negative parts are demonstrated at down to -8.89 dB squeezing, even when the initial squeezed vacuum input state has low purity. Benchmarking against such a degraded squeezed input state we report a maximum fidelity of more than 80% with a maximum cat amplitude of . Our experiment uses photon-addition from pairs, one of those photons is used for monitoring, giving us enhanced control; moreover the pair production rates are high and should allow for repeated application of photon-addition via repeat-stages.
Keywords
Cite
@article{arxiv.2306.13011,
title = {Generation of heralded optical `Schroedinger cat' states by photon-addition},
author = {Yi-Ru Chen and Hsien-Yi Hsieh and Jingyu Ning and Hsun-Chung Wu and Hua Li Chen and Zi-Hao Shi and Popo Yang and Ole Steuernagel and Chien-Ming Wu and Ray-Kuang Lee},
journal= {arXiv preprint arXiv:2306.13011},
year = {2023}
}
Comments
5 pages, 2 figures, 1 table