Ground state properties in the quasiclassical regime

IF 1.8 1区 数学 Q1 MATHEMATICS
Michele Correggi, Marco Falconi, Marco Olivieri
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引用次数: 9

Abstract

We study the ground state energy and ground states of systems coupling non-relativistic quantum particles and force-carrying Bose fields, such as radiation, in the quasi-classical approximation. The latter is very useful whenever the force-carrying field has a very large number of excitations,and thus behaves in a semiclassical way, while the non-relativistic particles, on the other hand, retain their microscopic features. We prove that the ground state energy of the fully microscopic model converges to the one of a nonlinear quasi-classical functional depending on both the particles' wave function and the classical configuration of the field. Equivalently, this energy can be interpreted as the lowest energy of a Pekar-like functional with an effective nonlinear interaction for the particles only. If the particles are confined, the ground state of the microscopic system converges as well, to a probability measure concentrated on the set of minimizers of the quasi-classical energy.
准经典状态下的基态性质
我们研究了在准经典近似下非相对论性量子粒子与载力玻色场(如辐射)耦合的系统的基态、能量和基态。后者在载力场有非常多的激励时非常有用,因此表现为半经典方式,而另一方面,非相对论性粒子保持其微观特征。我们证明了全微观模型的基态能量收敛于非线性准经典泛函的能量,这取决于粒子的波函数和场的经典构型。同样地,这个能量可以被解释为类pekar泛函的最低能量,它只对粒子具有有效的非线性相互作用。如果粒子是受限的,微观系统的基态也会收敛到一个集中在准经典能量最小值集合上的概率测度。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Analysis & PDE
Analysis & PDE MATHEMATICS, APPLIED-MATHEMATICS
CiteScore
3.80
自引率
0.00%
发文量
38
审稿时长
6 months
期刊介绍: APDE aims to be the leading specialized scholarly publication in mathematical analysis. The full editorial board votes on all articles, accounting for the journal’s exceptionally high standard and ensuring its broad profile.
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