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首页> 外文期刊>Journal of Modern Optics >Squeezed states in spontaneous Raman and in stimulated Raman processes
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Squeezed states in spontaneous Raman and in stimulated Raman processes

机译:自发拉曼和受激拉曼过程中的压缩状态

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摘要

The Hamiltonian and the equations of motion for various modes involving spontaneous and stimulated Raman processes are derived. The coupled differential equations involving these modes are solved analytically by using an intuitive approach (IA). The solution of the present paper does not require any short time approximation. As a matter of fact, the present solution for field operators and hence the squeezing for various modes are valid for all interaction time t. In this way, the present paper is more general compared to the earlier investigations where short-time approximations were found a must. By exploiting the solutions for the field operators, we obtain the squeezing effects of input coherent light for pure and for mixed field modes. The IA employs the perturbation theory and hence we came across the secular terms in the solution. Of course, for small coupling constants these secular terms, could be summed for all orders. To establish our claim, we remove the secular terms at least for one occasion.
机译:推导了涉及自发和受激拉曼过程的各种模式的哈密顿量和运动方程。涉及这些模式的耦合微分方程通过使用直观方法(IA)进行解析求解。本文的解决方案不需要任何短时近似。实际上,针对现场操作员的当前解决方案以及因此对各种模式的压缩对于所有交互时间t都是有效的。这样,与较早的研究相比,本论文更具笼统性,在早期的研究中,必须找到短时近似法。通过为现场算子开发解决方案,我们获得了纯场模式和混合场模式下输入相干光的压缩效应。 IA使用微扰理论,因此我们在解决方案中遇到了世俗术语。当然,对于较小的耦合常数,可以对所有阶次求和这些长期项。为了确定我们的主张,我们至少一次删除了世俗用语。

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