量子纠缠
物理
谐波
压缩相干态
领域(数学)
量子力学
量子电动力学
高次谐波产生
激光器
量子光学
真空状态
偶极子
相干态
量子
电压
纯数学
数学
作者
Philipp Stammer,Javier Rivera-Dean,Andrew S. Maxwell,Theocharis Lamprou,Javier Argüello-Luengo,P. Tzallas,M. F. Ciappina,Maciej Lewenstein
标识
DOI:10.1103/physrevlett.132.143603
摘要
Squeezed optical fields are a powerful resource for a variety of investigations in basic research and technology. However, the generation of intense squeezed light is challenging. Here, we show that intense squeezed light can be produced using strongly laser driven atoms and the so far unrelated process of high harmonic generation. We demonstrate that when the intensity of the driving field significantly depletes the ground state of the atoms, leading to dipole moment correlations, the quantum state of the driving field and the generated high harmonics are entangled and squeezed. Furthermore, we analyze how the resulting quadrature squeezing of the fundamental laser mode after the interaction can be controlled. The findings open the way for the generation of high intensity squeezed light states for a wide range of applications.
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