Notify 发表于 2025-3-23 11:40:10
Long-Range ,-Wave Proximity Effect into a Disordered Metal,Superconducting heterostructures have attracted a lot of attention recently as possible hosts of Majorana fermions. One of the important outstanding questions in the studies of these heterostructures is the interplay between topological superconductivity and disorder.遗传 发表于 2025-3-23 15:37:11
http://reply.papertrans.cn/23/2271/227044/227044_12.pngENDOW 发表于 2025-3-23 21:41:14
https://doi.org/10.1007/978-3-030-00488-0many-body localization; strongly interacting Bose-Einstein condensates; Majorana zero mode calculationRespond 发表于 2025-3-24 00:59:52
Springer Nature Switzerland AG 2018aplomb 发表于 2025-3-24 05:33:56
Partial characters of π-separable groupsontext of recent developments in condensed matter physics, such as zero-energy modes in topological systems, strongly interacting Bose condensates, and many-body localized systems, serve an auxiliary purpose as well. Each model is connected to a seemingly unrelated analogous classical system that el防止 发表于 2025-3-24 10:06:52
Representation Theory of Finite Monoidsstems. Notably, the remarkable phenomenon of many-body localization (MBL) was discovered. In an isolated system, MBL manifests itself in the localization of all eigenstates and leads to the breakdown of ergodicity and violation of the eigenvalue thermalization hypothesis, forcing to revisit the very丧失 发表于 2025-3-24 13:38:22
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Representation Theory of Finite Monoidsstems. Notably, the remarkable phenomenon of many-body localization (MBL) was discovered. In an isolated system, MBL manifests itself in the localization of all eigenstates and leads to the breakdown of ergodicity and violation of the eigenvalue thermalization hypothesis, forcing to revisit the very foundations of quantum statistical mechanics.Nonconformist 发表于 2025-3-25 02:25:25
4 Recollement: The Theory of an Idempotent those that appear in anthropic scales, which makes the theory appealing to our intuition. For this very reason, it historically precedes quantum mechanics that lies at the heart of our current understanding of nature.