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Surface Phonon Polaritons Mediated Energy Transfer between Nanoscale Gaps

机译:表面声子极化子介导的纳米间隙之间的能量转移

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Surface phonon polaritons are electromagnetic waves that propagate along the interfaces of polar dielectrics and exhibit a large local-field enhancement near the interfaces at infrared frequencies. Theoretical calculations show that such surface waves can lead to breakdown of the Planck's blackbody radiation law in the near field. Here, we experimentally demonstrate that surface phonon polaritons dramatically enhance energy transfer between two surfaces at small gaps by measuring radiation heat transfer between a microsphere and a flat surface down to 30 nm separation. The corresponding heat transfer coefficients at nanoscale gaps are 3 orders of magnitude larger than that of the blackbody radiation limit. The high energy flux can be exploited to develop new radiative cooling and thermophotovoltaic technologies.
机译:表面声子极化子是电磁波,它们沿着极性电介质的界面传播,并在红外频率的界面附近表现出较大的局部场增强。理论计算表明,此类表面波可导致近场中普朗克黑体辐射定律的破坏。在这里,我们通过实验证明,表面声子极化子可通过测量微球与平坦表面之间的辐射热传递(间隔低至30 nm)显着增强小间隙处的两个表面之间的能量传递。纳米级间隙的相应传热系数比黑体辐射极限的传热系数大3个数量级。可以利用高能量通量来开发新的辐射冷却和热光伏技术。

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