English

Identifying diverging-effective mass in MOSFET and $^3$He systems

Strongly Correlated Electrons 2022-05-05 v1

Abstract

Emerging devices such as a neuromorphic device and a qubit can use the Mott transition phenomenon, but in particular, the diverging mechanism of the phenomenon remains to be clarified. The diverging-effective mass near Mott insulators was measured in strongly correlated Mott systems such as a fermion 3^3He and a Si metal-oxide-semiconductor-field-effect transistor, and is closely fitted by the effective mass obtained by the extension of the Brinkman-Rice(BR) picture, m/m=1/[1(U/Uc)2]=1/(1κBR2ρ4)m^*/m=1/[1-(U/U_c)^2]=1/(1-{\kappa}^2_{BR}{\rho}^4) when κBR21({\kappa}^2_{BR}{\approx}1({\neq}1), where 0<U/Uc=κBRρ2<10<U/U_c={\kappa}_{BR}{\rho}^2<1, correlation strength is κBR{\kappa}_{BR}, band-filling is ρ{\rho}. Its identification is a percolation of a constant mass in the Brinkman-Rice picture. Over κBR0.96{\kappa}_{BR}{\approx}0.96 is evaluated.

Keywords

Cite

@article{arxiv.2205.01916,
  title  = {Identifying diverging-effective mass in MOSFET and $^3$He systems},
  author = {Hyun-Tak Kim},
  journal= {arXiv preprint arXiv:2205.01916},
  year   = {2022}
}

Comments

4 pages, 2 figures. This was presented and accepted in ICEIC 2022 Conference held on 6th-9th of February in 2022 at Grand Hyatt Jeju in Republic of Korea

R2 v1 2026-06-24T11:06:45.303Z