首页> 外文会议>International symposium on advanced optical manufacturing and testing technologies >The multimode entangled state with three states superposition on the (N+1)-dimensional Hilbert space and their N-th power difference squeezing properties
【24h】

The multimode entangled state with three states superposition on the (N+1)-dimensional Hilbert space and their N-th power difference squeezing properties

机译:(N + 1)维希尔伯特空间上具有三态叠加的多模纠缠态及其第N次方差压缩特性

获取原文

摘要

According to the principle of linear superposition of quantum mechanics, the multimode entangled states (as stated below) is formed on the finite-dimensional(N+1) Hilbert space by linearly superposing three quantum states: the multimode complex conjugate coherent state (as stated below), multimode complex conjugate imaginary coherent state (as stated below) and multimode vacuum state (as stated below), and their difference squeezing properties of generalized nonlinear equal-power N-th power is studied by utilizing the general theory of multimode squeezed states. The results show that on the finite -dimensional Hilbert space, while some conditions are satisfied, the two quadratures of the multimode entangled states (as stated below) present the equal-power N-th power difference squeezing properties, but under some other conditions, the difference squeezing effects of two quadratures can be displayed at the same time. The squeezed depth or squeezed degree in this space is different from that on the full-dimensional Hilbert space. The later result is not in conformity with the uncertainty principle. It is called "two -sided" difference squeezing.
机译:根据量子力学的线性叠加原理,通过线性叠加三个量子态,在有限维(N + 1)Hilbert空间上形成多模纠缠态(如下所述):下面),利用多模压缩态的一般理论研究了多模复共轭虚相干态(如下所述)和多模真空态(如下所述)以及它们的广义非线性等幂N次方的差分压缩特性。结果表明,在有限维希尔伯特空间上,虽然满足某些条件,但多模纠缠态的两个正交(如下所述)具有等幂次幂幂压缩特性,但在其他条件下,可以同时显示两个正交的压紧效应。该空间中的压缩深度或压缩度与全尺寸希尔伯特空间中的压缩深度或压缩度不同。后面的结果不符合不确定性原理。这被称为“两面”差异压缩。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号