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Pumping approximately integrable systems

机译:抽取近似可集成的系统

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摘要

Weak perturbations can drive an interacting many-particle system far from its initial equilibrium state if one is able to pump into degrees of freedom approximately protected by conservation laws. This concept has for example been used to realize Bose–Einstein condensates of photons, magnons and excitons. Integrable quantum systems, like the one-dimensional Heisenberg model, are characterized by an infinite set of conservation laws. Here, we develop a theory of weakly driven integrable systems and show that pumping can induce large spin or heat currents even in the presence of integrability breaking perturbations, since it activates local and quasi-local approximate conserved quantities. The resulting steady state is qualitatively captured by a truncated generalized Gibbs ensemble with Lagrange parameters that depend on the structure but not on the overall amplitude of perturbations nor the initial state. We suggest to use spin-chain materials driven by terahertz radiation to realize integrability-based spin and heat pumps.
机译:如果一个微扰能够将一个近似受守恒定律保护的自由度泵入自由度,则可以使一个相互作用的多粒子系统远离其初始平衡状态。例如,此概念已用于实现光子,磁振子和激子的玻色-爱因斯坦凝聚。像一维海森堡模型一样,可积分量子系统具有无限的守恒律。在这里,我们发展了弱驱动可积系统的理论,并表明,即使在存在可积性破坏扰动的情况下,泵浦也可以引起大的自旋或热流,因为它激活了局部和准局部近似守恒量。截断的广义Gibbs集合在定性上捕获了所得的稳态,该集合具有Lagrange参数,该参数取决于结构,而不取决于扰动的整体幅度或初始状态。我们建议使用由太赫兹辐射驱动的自旋链材料来实现基于可积性的自旋和热泵。

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