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Title: Physical properties of the quasi-two-dimensional square lattice antiferromagnet Ba2FeSi2O7

Journal Article · · Physical Review B
ORCiD logo [1]; ORCiD logo [2];  [3]; ORCiD logo [4]; ORCiD logo [4]; ORCiD logo [5];  [6]; ORCiD logo [1]
  1. Pohang Univ. of Science and Technology (POSTECH) (South Korea)
  2. Pohang Univ. of Science and Technology (POSTECH) (South Korea); Oak Ridge National Lab. (ORNL), Oak Ridge, TN (United States)
  3. Los Alamos National Lab. (LANL), Los Alamos, NM (United States). National High Magnetic Field Lab. (MagLab)
  4. National Inst. of Standards and Technology (NIST), Gaithersburg, MD (United States). Center for Neutron Research
  5. Oak Ridge National Lab. (ORNL), Oak Ridge, TN (United States)
  6. Pohang Univ. of Science and Technology (POSTECH) (South Korea); Pohang Univ. of Science and Technology (POSTECH) (South Korea). Lab. for Pohang Emergent Materials and Department of Physics; Rutgers Univ., Piscataway, NJ (United States). Rutgers Center for Emergent Materials

In this work, we report magnetization (χ, M ), magnetic specific heat ( C M ), and neutron powder diffraction results on a quasi-two-dimensional (2D) S = 2 square lattice antiferromagnet Ba 2 FeSi 2 O 7 consisting of FeO 4 tetrahedrons with highly compressive tetragonal distortion (27%). Despite of the quasi-2D lattice structure, both χ and C M present three-dimensional magnetic long-range ordering below the Néel temperature T N = 5.2 K . Neutron diffraction data show a collinear Q m = (1,0,1/2) antiferromagnetic (AFM) structure below T N but the ordered moment aligned in the a b plane is suppressed by 26% from the ionic spin S = 2 value ( 4 μ B ). Both the AFM structure and the suppressed moments are well explained by using Monte Carlo simulations with a large single-ion in-plane anisotropy D = 1 .4 meV and a rather small Heisenberg exchange J intra = 0 .15 meV in the plane. The characteristic 2D spin fluctuations are recognized in the magnetic entropy release and diffuse scattering above T N . This new quasi-2D magnetic system also displays unusual nonmonotonic dependence of T N as a function of magnetic field H .

Research Organization:
Oak Ridge National Lab. (ORNL), Oak Ridge, TN (United States)
Sponsoring Organization:
USDOE Office of Science (SC), Basic Energy Sciences (BES); POSTECH
Grant/Contract Number:
AC05-00OR22725; 2016K1A4A4A01922028; 2020M3H4A2084418; FG02-07ER46382
OSTI ID:
1841485
Alternate ID(s):
OSTI ID: 1837598
Journal Information:
Physical Review B, Vol. 104, Issue 21; ISSN 2469-9950
Publisher:
American Physical Society (APS)Copyright Statement
Country of Publication:
United States
Language:
English

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