Magnetic excitations in a quantum spin ladder (C5H9NH3)2CuBr4
Quantum spin ladders bridge the gap between one and two dimensions and have complex excitation spectra, which depend on the relative strengths of the leg and rung exchange interactions. While the realization of strong-rung ladders is fairly common, only one strong-leg ladder has been studied in detail so far. Here, we propose to use neutron spectroscopy to unveil the magnetic excitations in the previously overlooked quantum spin ladder, (C5H9NH3)2CuBr4, and confirm whether it is a strong-leg system as suggested by bulk measurements.
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The recommended format for citing this dataset in a research publication is in the following format:
ELSON Frank; Ola Kenji Forslund; Yuqing Ge; KOGERLER Paul; Bella Lake; MANSSON MARTIN; OLLIVIER Jacques; Rasmus Palm; PHILIPPE Jonas; SANZ CALVO Sergio; Yasmine Sassa; SHLIAKHTUN Oksana and SIMUTIS Gediminas. (2023). Magnetic excitations in a quantum spin ladder (C5H9NH3)2CuBr4. Institut Laue-Langevin (ILL) doi:10.5291/ILL-DATA.4-05-849
This data is not yet public
This data is not yet public