Suppression of hidden order in URu2Si2 under pressure and restoration in magnetic field
E Hassinger, D Aoki, F Bourdarot, G Knebel, V Taufour, S Raymond, A, Villaume, J Flouquet

TL;DR
This study uses neutron scattering and thermal expansion measurements to explore how pressure and magnetic field influence the hidden order and antiferromagnetic phases in URu2Si2, revealing their complex interplay and phase transitions.
Contribution
It provides new insights into the suppression and reemergence of hidden order in URu2Si2 under pressure and magnetic field, clarifying the relationship between hidden order, antiferromagnetism, and superconductivity.
Findings
Q_0 excitation is exclusive to the hidden order phase.
Magnetic field can suppress and then restore the hidden order phase.
The phase diagram shows strong pressure dependence of the reentrant magnetic field.
Abstract
We describe here recent inelastic neutron scattering experiments on the heavy fermion compound URu2Si2 realized in order to clarify the nature of the hidden order (HO) phase which occurs below T_0 = 17.5 K at ambient pressure. The choice was to measure at a given pressure P where the system will go, by lowering the temperature, successively from paramagnetic (PM) to HO and then to antiferromagnetic phase (AF). Furthermore, in order to verify the selection of the pressure, a macroscopic detection of the phase transitions was also achieved in situ via its thermal expansion response detected by a strain gauge glued on the crystal. Just above P_x = 0.5 GPa, where the ground state switches from HO to AF, the Q_0 = (1, 0, 0) excitation disappears while the excitation at the incommensurate wavevector Q_1 = (1.4, 0, 0) remains. Thus, the Q_0 = (1, 0, 0) excitation is intrinsic only in the HO…
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