论文标题
量子Zeno和反Zeno效应之间的相互作用,在非降级超拉曼非线性光学耦合器中
Interplay between quantum Zeno and anti-Zeno effects in a non-degenerate hyper-Raman nonlinear optical coupler
论文作者
论文摘要
在由探针波导和系统波导组成的非对称非线性光学耦合器中研究了量子Zeno和抗Zeno效应。该系统是在非分类超摩曼过程下运行的非线性波导,而系统中的两个泵模式都在不断与探针波导相互作用。探针的存在对系统的时间演变的影响,在Stokes和Anti-Stokes模式中的光子数量以及声子数量被量化为ZENO参数。在特定模式下,ZENO参数的负值(正)值被认为是在系统模式下量子Zeno(anti-Zeno)效应的签名。可以观察到,可以控制Stokes和抗烟药生成过程中的相位不匹配,以诱导量子Zeno和抗Zeno效应之间的过渡,以实现非谐振和谐振的Hyper-Raman工艺。但是,如果在系统波导中发生异常的超拉曼过程,则频率引起的参数也可以类似地使用以引起所需的交叉。此外,在此处使用的物理系统的一般性质和扰动技术使我们能够在许多特殊情况下分析观察量子Zeno和抗Zeno效应的可能性,包括该过程是自发的,部分自发性和/或该系统在退化的Hyper-Raman Process下进行操作。
Quantum Zeno and anti-Zeno effects are studied in an asymmetric nonlinear optical coupler composed of a probe waveguide and a system waveguide. The system is a nonlinear waveguide operating under non-degenerate hyper-Raman process, while both the pump modes in the system are constantly interacting with the probe waveguide. The effect of the presence of probe on the temporal evolution of the system in terms of the number of photons in Stokes and anti-Stokes modes as well as phonon number is quantified as Zeno parameter. The negative (positive) values of the Zeno parameter in the specific mode are considered as the signatures of the quantum Zeno (anti-Zeno)effect in that mode of the system. It is observed that the phase mismatch in Stokes and anti-Stokes generation processes can be controlled to induce a transition between quantum Zeno and anti-Zeno effects for both off-resonant and resonant hyper-Raman process. However, in case of off-resonant hyper-Raman process in the system waveguide, the frequency detuning parameters can also be used analogously to cause the desired crossover. Further, the general nature of the physical system and the perturbative technique used here allowed us to analytically study the possibilities of observing quantum Zeno and anti-Zeno effects in a large number of special cases, including situations where the process is spontaneous, partially spontaneous and/or the system is operated under degenerate hyper-Raman process, or a simple Raman process.