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      Raman Scattering as a Probe of the Magnetic State of BEDT-TTF Based Mott Insulators

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      Crystals
      MDPI AG

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          Quantum spin liquid states

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            Highly mobile gapless excitations in a two-dimensional candidate quantum spin liquid.

            The nature of quantum spin liquids, a novel state of matter where strong quantum fluctuations destroy the long-range magnetic order even at zero temperature, is a long-standing issue in physics. We measured the low-temperature thermal conductivity of the recently discovered quantum spin liquid candidate, the organic insulator EtMe3Sb[Pd(dmit)2]2. A sizable linear temperature dependence term is clearly resolved in the zero-temperature limit, indicating the presence of gapless excitations with an extremely long mean free path, analogous to excitations near the Fermi surface in pure metals. Its magnetic field dependence suggests a concomitant appearance of spin-gap-like excitations at low temperatures. These findings expose a highly unusual dichotomy that characterizes the low-energy physics of this quantum system.
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              Scattering of Light by One- and Two-Magnon Excitations

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                Author and article information

                Journal
                CRYSBC
                Crystals
                Crystals
                MDPI AG
                2073-4352
                June 2018
                May 23 2018
                : 8
                : 6
                : 233
                Article
                10.3390/cryst8060233
                7a645cc9-5d7c-4eae-9ed4-6ed4fd7a42cd
                © 2018

                https://creativecommons.org/licenses/by/4.0/

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