Cargando…

Evidence for pressure induced unconventional quantum criticality in the coupled spin ladder antiferromagnet C(9)H(18)N(2)CuBr(4)

Quantum phase transitions in quantum matter occur at zero temperature between distinct ground states by tuning a nonthermal control parameter. Often, they can be accurately described within the Landau theory of phase transitions, similarly to conventional thermal phase transitions. However, this pic...

Descripción completa

Detalles Bibliográficos
Autores principales: Hong, Tao, Ying, Tao, Huang, Qing, Dissanayake, Sachith E., Qiu, Yiming, Turnbull, Mark M., Podlesnyak, Andrey A., Wu, Yan, Cao, Huibo, Liu, Yaohua, Umehara, Izuru, Gouchi, Jun, Uwatoko, Yoshiya, Matsuda, Masaaki, Tennant, David A., Chern, Gia-Wei, Schmidt, Kai P., Wessel, Stefan
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group UK 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9163114/
https://www.ncbi.nlm.nih.gov/pubmed/35654798
http://dx.doi.org/10.1038/s41467-022-30769-8
_version_ 1784719860037582848
author Hong, Tao
Ying, Tao
Huang, Qing
Dissanayake, Sachith E.
Qiu, Yiming
Turnbull, Mark M.
Podlesnyak, Andrey A.
Wu, Yan
Cao, Huibo
Liu, Yaohua
Umehara, Izuru
Gouchi, Jun
Uwatoko, Yoshiya
Matsuda, Masaaki
Tennant, David A.
Chern, Gia-Wei
Schmidt, Kai P.
Wessel, Stefan
author_facet Hong, Tao
Ying, Tao
Huang, Qing
Dissanayake, Sachith E.
Qiu, Yiming
Turnbull, Mark M.
Podlesnyak, Andrey A.
Wu, Yan
Cao, Huibo
Liu, Yaohua
Umehara, Izuru
Gouchi, Jun
Uwatoko, Yoshiya
Matsuda, Masaaki
Tennant, David A.
Chern, Gia-Wei
Schmidt, Kai P.
Wessel, Stefan
author_sort Hong, Tao
collection PubMed
description Quantum phase transitions in quantum matter occur at zero temperature between distinct ground states by tuning a nonthermal control parameter. Often, they can be accurately described within the Landau theory of phase transitions, similarly to conventional thermal phase transitions. However, this picture can break down under certain circumstances. Here, we present a comprehensive study of the effect of hydrostatic pressure on the magnetic structure and spin dynamics of the spin-1/2 ladder compound C(9)H(18)N(2)CuBr(4). Single-crystal heat capacity and neutron diffraction measurements reveal that the Néel-ordered phase breaks down beyond a critical pressure of P(c) ∼ 1.0 GPa through a continuous quantum phase transition. Estimates of the critical exponents suggest that this transition may fall outside the traditional Landau paradigm. The inelastic neutron scattering spectra at 1.3 GPa are characterized by two well-separated gapped modes, including one continuum-like and another resolution-limited excitation in distinct scattering channels, which further indicates an exotic quantum-disordered phase above P(c).
format Online
Article
Text
id pubmed-9163114
institution National Center for Biotechnology Information
language English
publishDate 2022
publisher Nature Publishing Group UK
record_format MEDLINE/PubMed
spelling pubmed-91631142022-06-05 Evidence for pressure induced unconventional quantum criticality in the coupled spin ladder antiferromagnet C(9)H(18)N(2)CuBr(4) Hong, Tao Ying, Tao Huang, Qing Dissanayake, Sachith E. Qiu, Yiming Turnbull, Mark M. Podlesnyak, Andrey A. Wu, Yan Cao, Huibo Liu, Yaohua Umehara, Izuru Gouchi, Jun Uwatoko, Yoshiya Matsuda, Masaaki Tennant, David A. Chern, Gia-Wei Schmidt, Kai P. Wessel, Stefan Nat Commun Article Quantum phase transitions in quantum matter occur at zero temperature between distinct ground states by tuning a nonthermal control parameter. Often, they can be accurately described within the Landau theory of phase transitions, similarly to conventional thermal phase transitions. However, this picture can break down under certain circumstances. Here, we present a comprehensive study of the effect of hydrostatic pressure on the magnetic structure and spin dynamics of the spin-1/2 ladder compound C(9)H(18)N(2)CuBr(4). Single-crystal heat capacity and neutron diffraction measurements reveal that the Néel-ordered phase breaks down beyond a critical pressure of P(c) ∼ 1.0 GPa through a continuous quantum phase transition. Estimates of the critical exponents suggest that this transition may fall outside the traditional Landau paradigm. The inelastic neutron scattering spectra at 1.3 GPa are characterized by two well-separated gapped modes, including one continuum-like and another resolution-limited excitation in distinct scattering channels, which further indicates an exotic quantum-disordered phase above P(c). Nature Publishing Group UK 2022-06-02 /pmc/articles/PMC9163114/ /pubmed/35654798 http://dx.doi.org/10.1038/s41467-022-30769-8 Text en © The Author(s) 2022 https://creativecommons.org/licenses/by/4.0/Open Access This article is licensed under a Creative Commons Attribution 4.0 International License, which permits use, sharing, adaptation, distribution and reproduction in any medium or format, as long as you give appropriate credit to the original author(s) and the source, provide a link to the Creative Commons license, and indicate if changes were made. The images or other third party material in this article are included in the article’s Creative Commons license, unless indicated otherwise in a credit line to the material. If material is not included in the article’s Creative Commons license and your intended use is not permitted by statutory regulation or exceeds the permitted use, you will need to obtain permission directly from the copyright holder. To view a copy of this license, visit http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) .
spellingShingle Article
Hong, Tao
Ying, Tao
Huang, Qing
Dissanayake, Sachith E.
Qiu, Yiming
Turnbull, Mark M.
Podlesnyak, Andrey A.
Wu, Yan
Cao, Huibo
Liu, Yaohua
Umehara, Izuru
Gouchi, Jun
Uwatoko, Yoshiya
Matsuda, Masaaki
Tennant, David A.
Chern, Gia-Wei
Schmidt, Kai P.
Wessel, Stefan
Evidence for pressure induced unconventional quantum criticality in the coupled spin ladder antiferromagnet C(9)H(18)N(2)CuBr(4)
title Evidence for pressure induced unconventional quantum criticality in the coupled spin ladder antiferromagnet C(9)H(18)N(2)CuBr(4)
title_full Evidence for pressure induced unconventional quantum criticality in the coupled spin ladder antiferromagnet C(9)H(18)N(2)CuBr(4)
title_fullStr Evidence for pressure induced unconventional quantum criticality in the coupled spin ladder antiferromagnet C(9)H(18)N(2)CuBr(4)
title_full_unstemmed Evidence for pressure induced unconventional quantum criticality in the coupled spin ladder antiferromagnet C(9)H(18)N(2)CuBr(4)
title_short Evidence for pressure induced unconventional quantum criticality in the coupled spin ladder antiferromagnet C(9)H(18)N(2)CuBr(4)
title_sort evidence for pressure induced unconventional quantum criticality in the coupled spin ladder antiferromagnet c(9)h(18)n(2)cubr(4)
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9163114/
https://www.ncbi.nlm.nih.gov/pubmed/35654798
http://dx.doi.org/10.1038/s41467-022-30769-8
work_keys_str_mv AT hongtao evidenceforpressureinducedunconventionalquantumcriticalityinthecoupledspinladderantiferromagnetc9h18n2cubr4
AT yingtao evidenceforpressureinducedunconventionalquantumcriticalityinthecoupledspinladderantiferromagnetc9h18n2cubr4
AT huangqing evidenceforpressureinducedunconventionalquantumcriticalityinthecoupledspinladderantiferromagnetc9h18n2cubr4
AT dissanayakesachithe evidenceforpressureinducedunconventionalquantumcriticalityinthecoupledspinladderantiferromagnetc9h18n2cubr4
AT qiuyiming evidenceforpressureinducedunconventionalquantumcriticalityinthecoupledspinladderantiferromagnetc9h18n2cubr4
AT turnbullmarkm evidenceforpressureinducedunconventionalquantumcriticalityinthecoupledspinladderantiferromagnetc9h18n2cubr4
AT podlesnyakandreya evidenceforpressureinducedunconventionalquantumcriticalityinthecoupledspinladderantiferromagnetc9h18n2cubr4
AT wuyan evidenceforpressureinducedunconventionalquantumcriticalityinthecoupledspinladderantiferromagnetc9h18n2cubr4
AT caohuibo evidenceforpressureinducedunconventionalquantumcriticalityinthecoupledspinladderantiferromagnetc9h18n2cubr4
AT liuyaohua evidenceforpressureinducedunconventionalquantumcriticalityinthecoupledspinladderantiferromagnetc9h18n2cubr4
AT umeharaizuru evidenceforpressureinducedunconventionalquantumcriticalityinthecoupledspinladderantiferromagnetc9h18n2cubr4
AT gouchijun evidenceforpressureinducedunconventionalquantumcriticalityinthecoupledspinladderantiferromagnetc9h18n2cubr4
AT uwatokoyoshiya evidenceforpressureinducedunconventionalquantumcriticalityinthecoupledspinladderantiferromagnetc9h18n2cubr4
AT matsudamasaaki evidenceforpressureinducedunconventionalquantumcriticalityinthecoupledspinladderantiferromagnetc9h18n2cubr4
AT tennantdavida evidenceforpressureinducedunconventionalquantumcriticalityinthecoupledspinladderantiferromagnetc9h18n2cubr4
AT cherngiawei evidenceforpressureinducedunconventionalquantumcriticalityinthecoupledspinladderantiferromagnetc9h18n2cubr4
AT schmidtkaip evidenceforpressureinducedunconventionalquantumcriticalityinthecoupledspinladderantiferromagnetc9h18n2cubr4
AT wesselstefan evidenceforpressureinducedunconventionalquantumcriticalityinthecoupledspinladderantiferromagnetc9h18n2cubr4