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Weak Superfluidity in Twisted Optical Potentials

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arxiv 2406.12963 v1 pith:SWQO2QNJ submitted 2024-06-18 cond-mat.quant-gas cond-mat.dis-nncond-mat.str-el

Weak Superfluidity in Twisted Optical Potentials

classification cond-mat.quant-gas cond-mat.dis-nncond-mat.str-el
keywords quantumchanginggapsopticalphasepotentialsspectraltwisted
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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A controlled twist between different underlying lattices allows one to interpolate, under a unified framework, across ordered and (quasi-)disordered matter while drastically changing quantum transport properties. Here, we use quantum Monte Carlo simulations to determine the unique phase diagrams of strongly-correlated ultracold bosons in twisted optical potentials. We show that at commensurate twisting angles, spectral gaps govern the formation of insulating patterns, separated by thin superfluid domains. The latter form weak superfluids, which are very sensitive to thermal fluctuations, but can be stabilized under appropriate parameter control. In contrast, slightly changing the twisting angle to a incommensurate value destroys most spectral gaps, leaving behind a prominent Bose glass phase. Our results are directly applicable to current generation experiments that quantum simulate moir\'e physics.

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