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Low-temperature photon echo study of 2-MTHF glass under high pressure

机译:高压下2-MTHF玻璃的低温光子回波研究

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A high-pressure photon echo study of the low-temperature dynamics of rhodamine 640 in a 2-methyltetrahydrofuran (2-MTHF) molecular glass is reported. High pressure is found to decrease the homogeneous dephasing rate comparably to the volume compression ratio. The pressured-induced line narrowing is also qualitatively similar to high-pressure hole burning results reported for a 2-MTHF glass doped with bacteriochlorophyll a. The results are consistent with a pressure-induced decrease in the number of tunneling two-level systems (TLSs) that may be associated with collapsible void space in the molecular glass. Comparable high-pressure photon echo studies of organic polymer glasses over the same low-temperature range do not show line narrowing at high pressure, suggesting an intrinsic difference in the nature of TLSs for molecular versus polymer glasses. (c) 2005 Pleiades Publishing, Inc.
机译:报道了在2-甲基四氢呋喃(2-MTHF)分子玻璃中若丹明640低温动力学的高压光子回波研究。发现高压与体积压缩比相当地降低了均相移相速率。压力引起的线变窄在质量上也与报道的掺有细菌叶绿素a的2-MTHF玻璃的高压烧孔结果相似。该结果与压力诱导的隧穿二能级体系(TLS)数量的减少相一致,后者可能与分子玻璃中可塌陷的空隙空间有关。在相同的低温范围内,对有机聚合物玻璃进行的高压光子回波比较研究并未显示出在高压下的线变窄,这表明分子玻璃与聚合物玻璃的TLS本质上存在内在差异。 (c)2005年Pleiades Publishing,Inc.

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