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Quantum magnetism in molecular spin ladders probed with muonspin spectroscopy

Abstract:
Wepresent the results of muon-spin spectroscopy (μ+SR) measurements on the molecular spin ladder system (Hpip)2CuBr4(1−x)Cl4x, [Hpip = (C5H12N)]. Using transverse field μ+SR we are able to identify characteristic behaviour in each of the regions of the phase diagram of the x = 0 strong-rung spin ladder system (Hpip)2CuBr4. Comparison of our results to those of the dimer-based molecular magnet Cu(pyz)(gly)(ClO4) shows several common features.Welocate the crossovers in partially disordered (Hpip)2CuBr4(1−x)Cl4x (x = 0.05), where a region of behaviour intermediate between quantum disordered and Luttinger liquid-like is identified. Our interpretation of the results incorporates an analysis of the probable muon stopping states in (Hpip)2CuBr4 based on density functional calculations and suggests how the muon plus its local distortion can lead to a local probe unit with good sensitivity to the magnetic state. Using longitudinal field μ+SR we compare the dynamic response of the x = 1 strong-rung material (Hpip)2CuCl4 to that of the strong-leg material (C7H10N)2CuBr4 (known as DIMPY) and demonstrate that our results are in agreement with predictions based on interacting fermionic quasiparticle excitations in these materials.
Publication status:
Published
Peer review status:
Peer reviewed

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Publisher copy:
10.1088/1367-2630/aae21a

Authors



Publisher:
Institute of Physics
Journal:
New Journal of Physics More from this journal
Volume:
20
Pages:
103002
Publication date:
2018-10-04
Acceptance date:
2018-09-18
DOI:
EISSN:
1367-2630
ISSN:
1367-2630


Keywords:
Pubs id:
pubs:929239
UUID:
uuid:f9ce9c02-c02b-482a-8e93-fcb66bd19038
Local pid:
pubs:929239
Source identifiers:
929239
Deposit date:
2018-10-25

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