Momentum-resolved spin-conserving two-triplon bound state and continuum in a cuprate ladder

Tseng Y, Paris E, Schmidt KP, Zhang W, Asmara TC, Bag R, Strocov VN, Singh S, Schlappa J, Rønnow HM, Schmitt T (2023)


Publication Type: Journal article

Publication year: 2023

Journal

Book Volume: 6

Article Number: 138

Journal Issue: 1

DOI: 10.1038/s42005-023-01250-9

Abstract

Studying multi-particle elementary excitations has provided unique access to understand collective many-body phenomena in correlated electronic materials, paving the way towards constructing microscopic models. In this work, we perform O K-edge resonant inelastic X-ray scattering (RIXS) on the quasi-one-dimensional cuprate Sr 14Cu 24O 41 with weakly-doped spin ladders. The RIXS signal is dominated by a dispersing sharp mode ~ 270 meV on top of a damped incoherent component ~ 400-500 meV. Comparing with model calculations using the perturbative continuous unitary transformations method, the two components resemble the spin-conserving ΔS = 0 two-triplon bound state and continuum excitations in the spin ladders. Such multi-spin response with long-lived ΔS = 0 excitons is central to several exotic magnetic properties featuring Majorana fermions, yet remains unexplored given the generally weak cross-section with other experimental techniques. By investigating a simple spin-ladder model system, our study provides valuable insight into low-dimensional quantum magnetism.

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APA:

Tseng, Y., Paris, E., Schmidt, K.P., Zhang, W., Asmara, T.C., Bag, R.,... Schmitt, T. (2023). Momentum-resolved spin-conserving two-triplon bound state and continuum in a cuprate ladder. Communications Physics, 6(1). https://doi.org/10.1038/s42005-023-01250-9

MLA:

Tseng, Yi, et al. "Momentum-resolved spin-conserving two-triplon bound state and continuum in a cuprate ladder." Communications Physics 6.1 (2023).

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