Field-induced bound-state condensation and spin-nematic phase in SrCu$_2$(BO$_3$)$_2$ revealed by neutron scattering up to 25.9 T
Ellen Fogh, Mithilesh Nayak, Oleksandr Prokhnenko, Maciej Bartkowiak,, Koji Munakata, Jian-Rui Soh, Alexandra A. Turrini, Mohamed E. Zayed,, Ekaterina Pomjakushina, Hiroshi Kageyama, Hiroyuki Nojiri, Kazuhisa Kakurai,, Bruce Normand, Fr\'ed\'eric Mila, Henrik M. R{\o}nnow

TL;DR
This study uses high-field neutron scattering and advanced calculations to reveal a spin-nematic phase in SrCu$_2$(BO$_3$)$_2$, characterized by bound-state condensation and unconventional excitations, expanding understanding of quantum magnetic states.
Contribution
First high-field neutron scattering measurements combined with MPS calculations to identify a spin-nematic phase in SrCu$_2$(BO$_3$)$_2$, demonstrating bound-state condensation under extreme conditions.
Findings
Observation of a spin-nematic phase induced by high magnetic fields.
Detection of multiple multi-magnon bound states and novel excitations.
Persistence of a one-magnon spin gap indicating unconventional order.
Abstract
Bose-Einstein condensation (BEC) underpins exotic forms of order ranging from superconductivity to superfluid 4 He. In quantum magnetic materials, ordered phases induced by an applied magnetic field can be described as the BEC of magnon excitations. With sufficiently strong magnetic frustration, exemplified by the system SrCu(BO) , no clear magnon BEC is observed and the complex spectrum of multi-magnon bound states may allow a different type of condensation, but the high fields required to probe this physics have remained a barrier to detailed investigation. Here we exploit the first purpose-built high-field neutron scattering facility to measure the spin excitations of SrCu(BO) up to 25.9 T and use cylinder matrix-product-states (MPS) calculations to reproduce the experimental spectra with high accuracy. Multiple unconventional features point to a condensation…
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Taxonomy
TopicsPhysics of Superconductivity and Magnetism
