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JOURNALS // Pis'ma v Zhurnal Èksperimental'noi i Teoreticheskoi Fiziki // Archive

Pis'ma v Zh. Èksper. Teoret. Fiz., 2016 Volume 103, Issue 1, Pages 32–37 (Mi jetpl4829)

This article is cited in 7 papers

CONDENSED MATTER

Quasi-one-dimensional quantum spin liquid in the Cu(C$_4$H$_4$N$_2$)(NO$_3)_2$ insulator

V. R. Shaginyanab, V. A. Stephanovichc, K. G. Popovd, E. V. Kirichenkoe

a Clark Atlanta University, GA 30314 Atlanta, USA
b Konstantinov St. Petersburg Nuclear Physics Institute, National Research Centre "Kurchatov Institute", 188300 Gatchina, Russia
c Institute of Physics, Opole University, 45-052 Opole, Poland
d Komi Science Center UB of the RAS, 167982 Syktyvkar, Russia
e Institute of Mathematics and Informatics, Opole University, 45-052 Opole, Poland

Abstract: We analyze measurements of the magnetization, differential susceptibility and specific heat of quasi-one dimensional insulator Cu(C$_4$H$_4$N$_2$)(NO$_3$)$_2$ (CuPzN) subjected to magnetic fields. We show that the thermodynamic properties are defined by quantum spin liquid formed with spinons, with the magnetic field tuning the insulator CuPzN towards quantum critical point related to fermion condensation quantum phase transition (FCQPT) at which the spinon effective mass diverges kinematically. We show that the FCQPT concept permits to reveal and explain the scaling behavior of thermodynamic characteristics. For the first time, we construct the schematic $T{-}H$ (temperature–magnetic field) phase diagram of CuPzN, that contains Landau–Fermi-liquid, crossover and non-Fermi liquid parts, thus resembling that of heavy-fermion compounds.

Received: 23.11.2015

Language: English

DOI: 10.7868/S0370274X16010069


 English version:
Journal of Experimental and Theoretical Physics Letters, 2016, 103:1, 30–35

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