论文标题
相干状态描述的相同的阻尼谐波振荡器
Identical damped harmonic oscillators described by coherent states
论文作者
论文摘要
在没有热噪声的情况下,考虑了量子阻尼谐波振荡器(DHO)的某些方面。连续性方程是得出的,并构建了Bohmian轨迹。作为主方程的解决方案,我们采用单个相干状态,并通过分析计算相干性的相对熵,$ c_r $,在能量,位置和动量基础上。尽管$ c_r $在位置和动量基础上都是恒定的,但它在能源基础上的时间逐渐减少,长期变为零,揭示了其作为首选基础的作用。然后,计算量子相干性,以对两个相干状态,一个猫状态以及两个猫状态的叠加,在能量基础上叠加两个猫状态,作为分离的函数,在两个超塑状态之间的复杂平面中。可以看出,量子相干性随着这种分离而增加。此外,将叠加的量子相干性与叠加中分解状态的量子相干性进行了比较。最后,考虑到两个非相互作用DHOS的系统,研究了量子统计的影响对降低的单粒子状态的相干性,关节检测概率和粒子的平均平方分离。我们的计算表明,反对称态的单粒子相干性始终小于对称状态的单粒子。此外,在这个开放系统中可以看到玻色子抗束和费米束。玻色子的这种行为是在改良的汉伯里棕色 - 特威斯(HBT)干涉仪中观察到的光子抗束缚的物质波类似物。
Some aspects of quantum damped harmonic oscillator (DHO) obeying a Markovian master equation are considered in the absence of thermal noise. The continuity equation is derived and Bohmian trajectories are constructed. As a solution of the master equation, we take a single coherent state and compute analytically the relative entropy of coherence, $C_r$, in the energy, position and momentum bases. Although $C_r$ is constant in both the position and the momentum bases, it is a decreasing function of time in the energy basis becoming zero at long times, revealing its role as the preferred basis. Then, quantum coherence is computed for a superposition of two coherent states, a cat state, and also a superposition of two cat states in the energy basis as a function of separation, in the complex plane, between the two superposed states. It is seen that the quantum coherence increases with this separation. Furthermore, quantum coherence of superposition is compared to that of decomposed states in the superposition. Finally, considering a system of two non-interacting DHOs, the effect of quantum statistics is studied on the coherence of reduced single-particle states, the joint detection probability and the mean square separation of particles. Our computations show that the single-particle coherence for antisymmetric states is always less than that of symmetric ones. Furthermore, boson anti-bunching and fermion bunching is seen in this open system. This behavior of bosons is the matter-wave analogue of photon anti-bunching seen in a modified Hanbury Brown-Twiss (HBT) interferometer.