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Squeezed coherent states of motion for ions confined in quadrupole and octupole ion traps

机译:挤压连贯的离子运动状态,局限于四极和octupole离子陷阱

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Quasiclassical dynamics of trapped ions is characterized by applying the time dependent variational principle (TDVP) on coherent state orbits, in case of quadrupole and octupole combined (Paul and Penning) or radiofrequency (RF) traps. A dequantization algorithm is proposed, by which the classical Hamilton (energy) function associated to the system results as the expectation value of the quantum Hamiltonian on squeezed coherent states. We develop such method and particularize the quantum Hamiltonian for both combined and RF nonlinear traps, that exhibit axial symmetry. We also build the classical Hamiltonian functions for the particular traps we considered, and find the classical equations of motion. (C) 2017 Elsevier Inc. All rights reserved.
机译:捕获离子的拟痉挛动力学的特征在于将时间依赖性变分原理(TDVP)应用于相干状态轨道上,以便在四极杆和octupole组合(保罗和铅和粉笔)或射频(RF)陷阱的情况下。 提出了一种分序算法,通过该算法,与系统相关的古典汉密尔顿(能量)功能导致量子汉密尔顿人在挤压的相干状态上的期望值。 我们开发这种方法,并对轴向对称进行轴对称的组合和射频非线性陷阱进行Quantum Hamiltonian。 我们还为我们考虑的特定陷阱构建了经典的哈密顿函数,并找到了运动的经典方程。 (c)2017年Elsevier Inc.保留所有权利。

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