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Superfluidity below 20 K in condensed excitons

机译:凝聚态激子中20 K以下的超流

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In the condensed excitonic phase of intermediate valent TmSe0.45Te0.55 the heat conductivity and the thermal diffusivity have been obtained between 300 and 1.5 K and between ambient pressure and 17 kbar (1.7 GPa), as a first experiment of its kind. Pressure and temperature are used to navigate in three different phases of the material, the intermediate valent semiconducting phase, the condensed excitonic phase and the intermediate valent metallic phase. In the condensed excitonic phase the heat conductivity;, increases strongly below about 20 K, suggesting a superfluid phase for the lowest temperatures. In a solid under equilibrium conditions this has never been seen before. Also the thermal diffusivity a strongly increases below 20 K, giving evidence for second sound. The quotient Alpa represents the specific heat, which thus can be calculated, for the first time as a function of pressure and for a large temperature range. When entering the condensed excitonic phase under pressure and from high temperatures (100-250 K), the Dulong-Petit value of the specific heat drops precipitously to about half its value. Also this phenomenon is unprecedented. In addition the longitudinal sound velocity has been measured under pressure and as a function of temperature. Entering the excitonic phase the sound velocity drastically increases by about a factor 2. (c) 2004 Elsevier Ltd. All rights reserved.
机译:在中间价TmSe0.45Te0.55的凝聚激子相中,作为此类实验的第一个实验,已在300至1.5 K之间以及环境压力与17 kbar(1.7 GPa)之间获得了热导率和热扩散率。压力和温度用于在材料的三个不同相中导航​​,即中间价半导体相,凝聚态激子相和中间价金属相。在凝结的激子相中,热导率在约20 K以下大大增加,这表明在最低温度下为超流体相。在平衡条件下的固体中这从未见过。此外,在20 K以下,热扩散率a会大大增加,为第二声音提供了证据。 Alpa商代表比热,因此可以在较大的温度范围内首次计算出比热。当在高压和高温(100-250 K)下进入凝聚激子相时,比热的Dulong-Petit值急剧下降至其一半左右。同样,这种现象是前所未有的。另外,已经在压力下并根据温度测量了纵向声速。进入激子相,声速急剧增加约2倍。(c)2004 Elsevier Ltd.保留所有权利。

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