Properties of the t1 - t2 One-Dimensional Hubbard Model at Finite Temperature

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초록

The one-dimensional t(1) - t(2) half-filled Hubbard model is considered at finite temperatures T within a dynamical cluster approximation (DCA) with N-c = 24 in combination with a semiclassical approximation (SCA) impurity solver. The SCA approach accounts for long-range spatial fluctuations, where exact numerical impurity solvers can not capture due to computational expense, even though dynamical fluctuations are freezing. Therefore, it can consider both frequency- and momentum-resolved physical properties beyond the DCA with small cluster in combination with exact impurity solvers. By the computation of the static spin-spin correlation, the density of states, and the double occupancy, we examine the description of the frustrated one-dimensional systems at finite T within given approximations. We confirm not only the interaction-driven metal-insulator transition in the regions of t(2)/t(1) > 0.5, but also the commensurate-incommensurate transition by tunning t(2)/t(1) in the strong interaction region. We also observe finite T-driven metal-insulator transition.

키워드

Hubbard modelStrong correlationDynamical cluster approximationINSULATORSUPERCONDUCTIVITY
제목
Properties of the t1 - t2 One-Dimensional Hubbard Model at Finite Temperature
저자
Kim, SungKunLee, Hunpyo
DOI
10.3938/jkps.71.191
발행일
2017-08
유형
Article
저널명
Journal of the Korean Physical Society
71
4
페이지
191 ~ 195