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纳米颗粒中的等离子体辅助热调制

Plasmon assisted thermal modulation in nanoparticles.

作者信息

Lereu A L, Farahi R H, Tetard L, Enoch S, Thundat T, Passian A

机构信息

Oak Ridge National Laboratory, Oak Ridge, Tennessee 37831-6123, USA.

出版信息

Opt Express. 2013 May 20;21(10):12145-58. doi: 10.1364/OE.21.012145.

Abstract

Single-particle interactions hold the promise of nanometer-scale devices in areas such as data communications and storage, nanolithography, waveguides, renewable energy and therapeutics. We propose that the collective electronic properties possessed by noble metal nanoparticles may be exploited for device actuation via the unapparent mechanism of plasmon-assisted heat generation and flux. The temperature dependence of the dielectric function and the thermal transport properties of the particles play the central role in the feasibility of the thermally-actuated system, however the behavior of these thermoplasmonic processes is unclear. We experimentally and computationally analyzed modulation via thermoplasmonic processes on a test system of gold (Au) nano-islands. Modulation and energy transport in discontinuous domains exhibited quantitatively different characteristics compared to thin films. The results have implications for all surface plasmon based nano-devices where inevitable small-scale thermal processes are present.

摘要

单粒子相互作用在数据通信与存储、纳米光刻、波导、可再生能源和治疗学等领域为纳米级器件带来了希望。我们提出,贵金属纳米粒子所具有的集体电子特性可通过等离子体激元辅助热生成和通量这一不明显的机制用于器件驱动。粒子介电函数的温度依赖性和热传输特性在热驱动系统的可行性中起着核心作用,然而这些热等离子体过程的行为尚不清楚。我们通过实验和计算分析了金(Au)纳米岛测试系统上热等离子体过程的调制。与薄膜相比,不连续区域中的调制和能量传输表现出定量上不同的特性。这些结果对所有存在不可避免的小规模热过程的基于表面等离子体激元的纳米器件都有影响。

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