Abstract:
:Electronic nematicity, a correlated state that spontaneously breaks rotational symmetry, is observed in several layered quantum materials. In contrast to their liquid-crystal counterparts, the nematic director cannot usually point in an arbitrary direction (XY nematics), but is locked by the crystal to discrete directions (Ising nematics), resulting in strongly anisotropic fluctuations above the transition. Here, we report on the observation of nearly isotropic XY-nematic fluctuations, via elastoresistance measurements, in hole-doped Ba1-x Rb x Fe2As2 iron-based superconductors. While for [Formula: see text], the nematic director points along the in-plane diagonals of the tetragonal lattice, for [Formula: see text], it points along the horizontal and vertical axes. Remarkably, for intermediate doping, the susceptibilities of these two symmetry-irreducible nematic channels display comparable Curie-Weiss behavior, thus revealing a nearly XY-nematic state. This opens a route to assess this elusive electronic quantum liquid-crystalline state.
journal_name
Proc Natl Acad Sci U S Aauthors
Ishida K,Tsujii M,Hosoi S,Mizukami Y,Ishida S,Iyo A,Eisaki H,Wolf T,Grube K,V Löhneysen H,Fernandes RM,Shibauchi Tdoi
10.1073/pnas.1909172117subject
Has Abstractpub_date
2020-03-24 00:00:00pages
6424-6429issue
12eissn
0027-8424issn
1091-6490pii
1909172117journal_volume
117pub_type
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