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首页> 外文期刊>Physical Review, A. Atomic, molecular, and optical physics >Analysis of Gaussian-beam degenerate optical parametric amplifiers for the generation of quadrature-squeezed states
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Analysis of Gaussian-beam degenerate optical parametric amplifiers for the generation of quadrature-squeezed states

机译:高斯光束简并光学参量放大器的分析,用于生成正交压缩态

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This paper investigates the generation of quadrature-squeezed states of light using a degenerate optical parametric amplifier (DOPA) that is pumped by a focused Gaussian beam. The formulation that is presented facilitates the calculation of squeezing for an arbitrary local oscillator beam. This formulation also establishes a formal equivalence between the classical parametric gain and the measured level of squeezing. The maximum squeezing that can be achieved using a Gaussian-beam local oscillator is determined to be limited to 13.4 dB. as a consequence of gain-induced diffraction. The phase lag of the maximally squeezed quadrature is shown to be significantly different from the plane-wave theoretic value of pi/2, unless the focusing is very weak. The use of a second DOPA for generating a local oscillator beam that is matched to the squeezed field is also investigated. In this case, squeezing is limited only by the available pump power. [S1050-2947(99)09911-4]. [References: 13]
机译:本文研究了使用由聚焦高斯光束泵浦的简并光参量放大器(DOPA)产生的光的正交压缩状态。提出的公式有助于计算任意本地振荡器光束的压缩。该公式还建立了经典参数增益与测得的压缩水平之间的形式等效性。确定使用高斯光束本地振荡器可以实现的最大压缩限制为13.4 dB。由于增益引起的衍射。除非聚焦非常弱,否则显示最大压缩正交的相位滞后与pi / 2的平面波理论值明显不同。还研究了使用第二DOPA生成与压缩场匹配的本地振荡器束的方法。在这种情况下,挤压仅受可用泵功率的限制。 [S1050-2947(99)09911-4]。 [参考:13]

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