arXiv:2212.00848·v1·Quantum Physics
Are the ground states of randomly interacting bosons random?
Charles White · Alexander Volya · Declan Mulhall · Vladimir Zelevinsky
Abstract
Bosonic degrees of freedom and their emergence as a part of complex quantum many-body dynamics, symmetries, collective behavior, clustering and phase transitions play an important role in modern studies of quantum systems. In this work we present a systematic study of many-boson systems governed by random interactions. Our findings show that ground states of randomly interacting bosons are not random, being dominated by a few collective configurations containing condensates of clusters.
Comments: 15 pages, 14 figures