论文标题
低温下的薄声子腔的比热量:Zeptojoule量热法揭示的非常高的值
Specific Heat of Thin Phonon Cavities at Low Temperature: Very High Values Revealed by ZeptoJoule Calorimetry
论文作者
论文摘要
研究了声子腔的比热,以分析声子限制对热力学特性的影响。在低维限制下,自由含有非常薄的sin膜的特异性被测量到非常低的温度(从6〜K到50 〜MK)。在整个温度范围内,我们测量了比在无定形固体中观察到的典型值大的特定热量数量级过多。在1〜K以下,可以看到$ C_P $对低功率定律的交叉,并且比较薄的膜的特定热量的价值大于较厚的膜的较厚膜的值,表现出了来自表面的显着贡献。我们表明,特定热的高值无法通过2D声子模式(羔羊波)的唯一贡献来解释。厚度取决于厚度的过多的热量可能来自于在表面上的无定形固体的低密度区域形成的两个水平系统(TL)。我们还表明,特定的热量是通过膜的内部应力通过数量级强烈调节的,从而使高值具有前所未有的高值,从而使低压力罪在非常低的温度下非常有效地存储能量。
Specific heat of phonon cavities is investigated in order to analyse the effect of phonon confinement on thermodynamic properties. The specific heat of free standing very thin SiN membranes in the low dimensional limit is measured down to very low temperatures (from 6~K to 50~mK). In the whole temperature range, we measured an excess of specific heat orders of magnitude bigger than the typical value observed in amorphous solids. Below 1~K, a cross-over in $c_p$ to a lower power law is seen, and the value of specific heat of thinner membranes becomes larger than that of thicker ones demonstrating a significant contribution coming from the surface. We show that this high value of the specific heat cannot be explained by the sole contribution of 2D phonon modes (Lamb waves). The excess specific heat, being thickness dependent, could come from tunneling two level systems (TLS) that form in low density regions of amorphous solids located on the surfaces. We also show that the specific heat is strongly tuned by the internal stress of the membrane by orders of magnitude, giving unprecedentedly high values, making low stress SiN very efficient for energy storage at very low temperature.