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Dynamical Cluster Approximation Plus Semiclassical Approximation Study for a Mott Insulator and d-Wave Pairing
WEB OF SCIENCE
2SCOPUS
1초록
Via a dynamical cluster approximation with N-c = 4 in combination with a semiclassical approximation (DCA+SCA), we study the doped two-dimensional Hubbard model. We obtain a plaquette antiferromagnetic (AF) Mott insulator, a plaquette AF ordered metal, a pseudogap (or d-wave superconductor) and a paramagnetic metal by tuning the doping concentration. These features are similar to the behaviors observed in copper-oxide superconductors and are in qualitative agreement with the results calculated by the cluster dynamical mean field theory with the continuous-time quantum Monte Carlo (CDMFT+CTQMC) approach. The results of our DCA+SCA differ from those of the CDMFT+CTQMC approach in that the d-wave superconducting order parameters are shown even in the high doped region, unlike the results of the CDMFT+CTQMC approach. We think that the strong plaquette AF orderings in the dynamical cluster approximation (DCA) with Nc = 4 suppress superconducting states with increasing doping up to strongly doped region, because frozen dynamical fluctuations in a semiclassical approximation (SCA) approach are unable to destroy those orderings. Our calculation with short-range spatial fluctuations is initial research, because the SCA can manage long-range spatial fluctuations in feasible computational times beyond the CDMFT+CTQMC tool. We believe that our future DCA+SCA calculations should supply information on the fully momentum-resolved physical properties, which could be compared with the results measured by angle-resolved photoemission spectroscopy experiments.
키워드
- 제목
- Dynamical Cluster Approximation Plus Semiclassical Approximation Study for a Mott Insulator and d-Wave Pairing
- 저자
- Kim, SungKun; Lee, Hunpyo
- 발행일
- 2017-06
- 유형
- Article
- 권
- 70
- 호
- 12
- 페이지
- 1049 ~ 1053