Quantum Spin Singlet and Classical Néel-Ordered Ground States in MoX3 (X = I, Br) Spin-3/2 Dimerized Antiferromagnetic Chain Crystals

Fuente: arXiv
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Main Authors: Teeter, Jordan, Debnath, Topojit, Goyal, Harshil, Bijoy, Md Sabbir Hossen, Taheri, Maedeh, Sesing, Nicholas, Kargar, Fariborz, Shtengel, Kirill, Salguero, Tina, Lake, Roger K., Balandin, Alexander A.
Format: Preprint
Published: 2025
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author Teeter, Jordan
Debnath, Topojit
Goyal, Harshil
Bijoy, Md Sabbir Hossen
Taheri, Maedeh
Sesing, Nicholas
Kargar, Fariborz
Shtengel, Kirill
Salguero, Tina
Lake, Roger K.
Balandin, Alexander A.
author_facet Teeter, Jordan
Debnath, Topojit
Goyal, Harshil
Bijoy, Md Sabbir Hossen
Taheri, Maedeh
Sesing, Nicholas
Kargar, Fariborz
Shtengel, Kirill
Salguero, Tina
Lake, Roger K.
Balandin, Alexander A.
contents We report that MoX3 (X = I, Br) are rare van der Waals materials that exhibit signatures of both quantum spin chains with a spin singlet ground state and classical Neel order. Bulk single crystals grown by chemical vapor transport exhibit classical antiferromagnetic ground states with a transition temperature of ~40 K as revealed by susceptibility and specific heat measurements. Above 40 K, the susceptibilities show the large, broad peaks associated with a quantum spin-singlet ground state and large singlet-triplet gaps of 21 meV and 25 meV. Monte Carlo simulations, density matrix renormalization-group calculations for finite spin-3/2 chains, and density functional theory reproduce the experimental behavior, confirming the interplay between strong one-dimensional intrachain and weak three-dimensional interchain couplings. MoX3 offers a unique platform for exploring quantum magnetism and magnetic excitations at the atomic chain limit, as these materials combine a 1D van der Waals motif, spin chain behavior, and classical interchain order.
format Preprint
id arxiv_https___arxiv_org_abs_2510_12613
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Quantum Spin Singlet and Classical Néel-Ordered Ground States in MoX3 (X = I, Br) Spin-3/2 Dimerized Antiferromagnetic Chain Crystals
Teeter, Jordan
Debnath, Topojit
Goyal, Harshil
Bijoy, Md Sabbir Hossen
Taheri, Maedeh
Sesing, Nicholas
Kargar, Fariborz
Shtengel, Kirill
Salguero, Tina
Lake, Roger K.
Balandin, Alexander A.
Strongly Correlated Electrons
Mesoscale and Nanoscale Physics
We report that MoX3 (X = I, Br) are rare van der Waals materials that exhibit signatures of both quantum spin chains with a spin singlet ground state and classical Neel order. Bulk single crystals grown by chemical vapor transport exhibit classical antiferromagnetic ground states with a transition temperature of ~40 K as revealed by susceptibility and specific heat measurements. Above 40 K, the susceptibilities show the large, broad peaks associated with a quantum spin-singlet ground state and large singlet-triplet gaps of 21 meV and 25 meV. Monte Carlo simulations, density matrix renormalization-group calculations for finite spin-3/2 chains, and density functional theory reproduce the experimental behavior, confirming the interplay between strong one-dimensional intrachain and weak three-dimensional interchain couplings. MoX3 offers a unique platform for exploring quantum magnetism and magnetic excitations at the atomic chain limit, as these materials combine a 1D van der Waals motif, spin chain behavior, and classical interchain order.
title Quantum Spin Singlet and Classical Néel-Ordered Ground States in MoX3 (X = I, Br) Spin-3/2 Dimerized Antiferromagnetic Chain Crystals
topic Strongly Correlated Electrons
Mesoscale and Nanoscale Physics
url https://arxiv.org/abs/2510.12613