论文标题
12.6 dB在1550 nm处挤压弓形腔,用于长期高占空比操作
12.6 dB squeezed light at 1550 nm from a bow-tie cavity for long-term high duty cycle operation
论文作者
论文摘要
挤压状态是一类有趣的量子状态,具有许多应用。这项工作为挤压真空生成的弓形光学参数放大器(OPA)的设计,表征和操作提供了设计,表征和操作。我们报告了系统的高占空比操作和长期稳定性,使其适用于基于选择后的连续可变量子信息协议,群集状态量子计算,量子计量学和潜在的重力波检测器。在连续50小时的连续操作中,测得的挤压水平大于10 dB,占空比为96.6%。另外,在不同的操作方式中,挤压器还可以在12小时内没有重新锁定的量子噪声限制下的10 dB,平均挤压为11.9 dB。我们还测量了1550 nm的最大挤压水平为12.6 dB。这是迄今为止1550 nm的最佳报告挤压结果之一。我们讨论了实验的设计方面,这些方面有助于OPA的整体稳定性,可靠性和寿命,以及自动锁定方案和不同的操作模式。
Squeezed states are an interesting class of quantum states that have numerous applications. This work presents the design, characterisation, and operation of a bow-tie optical parametric amplifier (OPA) for squeezed vacuum generation. We report the high duty cycle operation and long-term stability of the system that makes it suitable for post-selection based continuous-variable quantum information protocols, cluster-state quantum computing, quantum metrology, and potentially gravitational wave detectors. Over a 50 hour continuous operation, the measured squeezing levels were greater than 10 dB with a duty cycle of 96.6%. Alternatively, in a different mode of operation, the squeezer can also operate 10 dB below the quantum noise limit over a 12 hour period with no relocks, with an average squeezing of 11.9 dB. We also measured a maximum squeezing level of 12.6 dB at 1550 nm. This represents one of the best reported squeezing results at 1550 nm to date for a bow-tie cavity. We discuss the design aspects of the experiment that contribute to the overall stability, reliability, and longevity of the OPA, along with the automated locking schemes and different modes of operation.