Joint Quantum Institute, National Institute of Standards and Technology, Gaithersburg, Maryland 20899, USA.
Phys Rev Lett. 2011 Apr 8;106(14):140405. doi: 10.1103/PhysRevLett.106.140405.
After a quench, observables in an integrable system may not relax to the standard thermal values, but can relax to the ones predicted by the generalized Gibbs ensemble (GGE) [M. Rigol et al., Phys. Rev. Lett. 98, 050405 (2007)]. The GGE has been shown to accurately describe observables in various one-dimensional integrable systems, but the origin of its success is not fully understood. Here we introduce a microcanonical version of the GGE and provide a justification of the GGE based on a generalized interpretation of the eigenstate thermalization hypothesis, which was previously introduced to explain thermalization of nonintegrable systems. We study relaxation after a quench of one-dimensional hard-core bosons in an optical lattice. Exact numerical calculations for up to 10 particles on 50 lattice sites (≈10(10) eigenstates) validate our approach.
淬火后,可积系统中的可观测量可能不会弛豫到标准热值,而是可以弛豫到广义吉布斯系综(GGE)[M. Rigol 等人,Phys. Rev. Lett. 98, 050405 (2007)]预测的值。已经证明,GGE 可以准确描述各种一维可积系统中的可观测量,但它成功的原因尚不完全清楚。在这里,我们引入了 GGE 的正则版本,并基于对本征态热化假设的广义解释,为 GGE 提供了一个证明,该假设之前被引入来解释非可积系统的热化。我们研究了一维硬芯玻色子在光晶格中淬火后的弛豫。多达 10 个粒子在 50 个晶格位置上的精确数值计算(≈10(10)本征态)验证了我们的方法。