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首页> 外文期刊>The Journal of Chemical Physics >Open quantum dynamics of a three-dimensional rotor calculated using a rotationally invariant system-bath Hamiltonian: Linear and two-dimensional rotational spectra
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Open quantum dynamics of a three-dimensional rotor calculated using a rotationally invariant system-bath Hamiltonian: Linear and two-dimensional rotational spectra

机译:使用旋转不变的系统浴室汉密尔顿山脉的三维转子的打开量子动力学:线性和二维旋转光谱

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摘要

We consider a rotationally invariant system-bath (RISB) model in three-dimensional space that is described by a linear rigid rotor independently coupled to three harmonic-oscillator baths through functions of the rotor's Euler angles. While this model has been developed to study the dielectric relaxation of a dipolar molecule in solvation as a problem of classical Debye relaxation, here we investigate it as a problem of open quantum dynamics. Specifically, the treatment presented here is carried out as an extension of a previous work [Y. Iwamoto and Y. Tanimura, J. Chem. Phys 149, 084110 (2018)], in which we studied a two-dimensional (2D) RISB model, to a three-dimensional (3D) RISB model. As in the 2D case, due to a difference in the energy discretization of the total Hamiltonian, the dynamics described by the 3D RISB model differ significantly from those described by the rotational Caldeira-Leggett model. To illustrate the characteristic features of the quantum 3D rotor system described by angular momentum and magnetic quantum numbers, we derive a quantum master equation (QME) and hierarchical equations of motion for the 3D RISB model in the high-temperature case. Using the QME, we compute linear and 2D rotational spectra defined by the linear and nonlinear response functions of the rotor dipole, respectively. The quantum transitions between the angular momentum states and magnetic states arising from polarized Stark fields as well as the system-bath interactions can be clearly observed in 2D rotational spectroscopy.
机译:我们考虑在三维空间中的旋转不变的系统浴(RISB)模型,其通过转子的欧拉角的功能独立地耦合到三个谐波振荡器浴的线性刚性转子。虽然该模型已经开发出研究偶极分子在溶剂化中的介电弛豫作为古典德语松弛的问题,但我们在这里调查它是开放量子动态的问题。具体地,这里呈现的处理是作为先前工作的延伸进行的[Y. Iwamoto和Y.Tanimura,J.Chem。 Phys 149,084110(2018)],我们研究了一种二维(2D)RISB模型,到三维(3D)RISB模型。如在2D情况下,由于总汉密尔顿人的能量离散化的差异,3D RISB模型所描述的动态与旋转Caldeira-Leggett模型所描述的那些有显着的不同之处。为了说明由角动量和磁量子数描述的量子3D转子系统的特征,我们在高温壳体中导出了用于3D RISB模型的量子母部方程(QME)和运动的分层方程。使用QME,我们分别计算由转子偶极子的线性和非线性响应函数定义的线性和2D旋转光谱。在2D旋转光谱中可以清楚地观察到从偏振的STARK领域产生的角动量状态和磁性态的量子转变,以及系统浴相互作用。

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