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Signatures of Many-Body Localization in a Controlled Open Quantum System

机译:受控开放量子系统中许多身体定位的签名

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In the presence of disorder, an interacting closed quantum system can undergo many-body localization (MBL) and fail to thermalize. However, over long times, even weak couplings to any thermal environment will necessarily thermalize the system and erase all signatures of MBL. This presents a challenge for experimental investigations of MBL since no realistic system can ever be fully closed. In this work, we experimentally explore the thermalization dynamics of a localized system in the presence of controlled dissipation. Specifically, we find that photon scattering results in a stretched exponential decay of an initial density pattern with a rate that depends linearly on the scattering rate. We find that the resulting susceptibility increases significantly close to the phase transition point. In this regime, which is inaccessible to current numerical studies, we also find a strong dependence on interactions. Our work provides a basis for systematic studies of MBL in open systems and opens a route towards extrapolation of closed-system properties from experiments.
机译:在病症存在下,相互作用的闭合量子系统可以经历许多身体定位(MBL)并且不能热化。然而,多次,甚至对任何热环境的弱联轴器都必须热化系统并擦除MBL的所有签名。这对MBL的实验研究提出了挑战,因为没有完全关闭的现实系统。在这项工作中,我们在受控耗散存在下实验探索局部系统的热化动态。具体地,我们发现光子散射导致初始密度图案的拉伸指数衰减,其速率依赖于散射速率。我们发现所产生的易感性显着靠近相位过渡点。在这一制度中,目前数值研究无法进入,我们还发现了对互动的强烈依赖。我们的工作为开放系统中MBL的系统研究提供了基础,并开启了从实验中推出了闭合系统性质的途径。

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