Pressure-dependent dielectric response of the frustrated Mott insulator Kappa-(BEDT-TTF)2Ag2(CN)3

R. Roesslhuber, R. Huebner,M. Dressel,A. Pustogow

PHYSICAL REVIEW B(2023)

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摘要
We explore the dielectric properties of the molecular quantum-spin-liquid candidate K-(BEDT-TTF)2 Ag2(CN)3 as a function of frequency, pressure, and temperature. The transition from the incoherent semicon-ducting to the Mott-insulating state at the quantum Widom line yields a drop of the low-frequency dielectric constant to small positive values E1 approximate to 10. The characteristic relaxor-type peak around T = 50 K moves to lower temperatures when pressurized. An additional feature appears and quickly grows as the percolative first-order transition is approached with rising pressure. Above 4 kbar, it dominates the dielectric response and rapidly shifts to T -> 0. Overall, the pressure-dependent dielectric response is remarkably similar to the less-correlated sister compound K-(BEDT-TTF)2Cu2(CN)3. At the Mott transition, we identify a reentrant insulating behavior at T* = 11 K which might indicate a low-entropy ground state - possibly with a spin gap.
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