Dissipation splits the 1D Mott transition into two distinct critical points via an intermediate compressible gapless dissipative phase with zero superfluid stiffness.
Bouverot-Dupuis, A
2 Pith papers cite this work. Polarity classification is still indexing.
verdicts
UNVERDICTED 2representative citing papers
Functional renormalization group analysis of the 1D dissipative Bose-Hubbard model reveals a Luttinger-liquid line of fixed points competing with a dissipative fixed point of finite compressibility and vanishing superfluid stiffness, separated by a BKT transition, for ohmic to super-ohmic baths.
citing papers explorer
-
Dissipation splits the Mott transition in one dimension
Dissipation splits the 1D Mott transition into two distinct critical points via an intermediate compressible gapless dissipative phase with zero superfluid stiffness.
-
Functional renormalization group study of a dissipative Bose--Hubbard model
Functional renormalization group analysis of the 1D dissipative Bose-Hubbard model reveals a Luttinger-liquid line of fixed points competing with a dissipative fixed point of finite compressibility and vanishing superfluid stiffness, separated by a BKT transition, for ohmic to super-ohmic baths.