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将真空压缩光量子频率转换为明亮的可调谐蓝色压缩光和高阶空间模式。

Quantum frequency conversion of vacuum squeezed light to bright tunable blue squeezed light and higher-order spatial modes.

作者信息

Kerdoncuff Hugo, Christensen Jesper B, Lassen Mikael

出版信息

Opt Express. 2021 Sep 13;29(19):29828-29840. doi: 10.1364/OE.436325.

Abstract

Quantum frequency conversion, the process of shifting the frequency of an optical quantum state while preserving quantum coherence, can be used to produce non-classical light at otherwise unapproachable wavelengths. We present experimental results based on highly efficient sum-frequency generation (SFG) between a vacuum squeezed state at 1064 nm and a tunable pump source at 850 nm ± 50 nm for the generation of bright squeezed light at 472 nm ± 4 nm, currently limited by the phase-matching of the used nonlinear crystal. We demonstrate that the SFG process conserves part of the quantum coherence as a 4.2(±0.2) dB 1064 nm vacuum squeezed state is converted to a 1.6(±0.2) dB tunable bright blue squeezed state. We furthermore demonstrate simultaneous frequency- and spatial-mode conversion of the 1064-nm vacuum squeezed state, and measure 1.1(±0.2) dB and 0.4(±0.2) dB of squeezing in the TEM and TEM modes, respectively. With further development, we foresee that the source may find use within fields such as sensing, metrology, spectroscopy, and imaging.

摘要

量子频率转换是在保持量子相干性的同时改变光量子态频率的过程,可用于产生处于其他难以达到波长的非经典光。我们展示了基于1064nm的真空压缩态与850nm±50nm的可调谐泵浦源之间的高效和频产生(SFG)的实验结果,用于在472nm±4nm产生明亮的压缩光,目前受所用非线性晶体的相位匹配限制。我们证明,随着一个4.2(±0.2)dB的1064nm真空压缩态转换为一个1.6(±0.2)dB的可调谐亮蓝色压缩态,SFG过程保留了部分量子相干性。我们还展示了1064nm真空压缩态的同时频率和空间模式转换,并分别在TEM和TEM模式下测量到1.1(±0.2)dB和0.4(±0.2)dB的压缩。随着进一步发展,我们预计该光源可用于传感、计量、光谱学和成像等领域。

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