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Two-level systems and boson peak remain stable in 110-million-year-old amber glass

机译:两级系统和玻色子峰在1.1亿年前的琥珀色玻璃中保持稳定

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摘要

The two most prominent and ubiquitous features of glasses at low temperatures, namely the presence of tunneling two-level systems and the so-called boson peak in the reduced vibrational density of states, are shown to persist essentially unchanged in highly stabilized glasses, contrary to what was usually envisaged. Specifically, we have measured the specific heat of 110 million-year-old amber samples from El Soplao (Spain), both at very low temperatures and around the glass transition Tg. In particular, the amount of two-level systems, assessed at the lowest temperatures, was surprisingly found to be exactly the same for the pristine hyperaged amber as for the, subsequently, partially and fully rejuvenated samples. © 2014 American Physical Society.
机译:与低温相反,在低温下,玻璃的两个最突出和普遍存在的特征,即隧道二能级系统的存在和状态振动密度降低的所谓玻色子峰,在高度稳定的玻璃中基本上保持不变。通常所设想的。具体来说,我们在非常低的温度下和玻璃化转变温度Tg附近测量了来自西班牙El Soplao的1.1亿年前的琥珀色样品的比热。特别是,在最低温度下评估的两级系统的数量出乎意料地发现,原始的高龄琥珀与随后的部分和完全恢复活力的样品完全相同。 ©2014美国物理学会。

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