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使用纳米机械谐振器测量深亚波长距离下的近场辐射热传递。

Measurement of Near-Field Radiative Heat Transfer at Deep Sub-Wavelength Distances using Nanomechanical Resonators.

作者信息

Giroux Mathieu, Stephan Michel, Brazeau Maxime, Molesky Sean, Rodriguez Alejandro W, Krich Jacob J, Hinzer Karin, St-Gelais Raphael

机构信息

Department of Mechanical Engineering, University of Ottawa, Ottawa, Ontario K1N 6N5, Canada.

Department of Engineering Physics, Polytechnique Montreal, Montreal, Quebec H3T 1J4, Canada.

出版信息

Nano Lett. 2023 Sep 27;23(18):8490-8497. doi: 10.1021/acs.nanolett.3c02049. Epub 2023 Sep 6.

Abstract

Near-field radiative heat transfer (NFRHT) measurements often rely on custom microdevices that can be difficult to reproduce after their original demonstration. Here we study NFRHT using plain silicon nitride (SiN) membrane nanomechanical resonators─a widely available substrate used in applications such as electron microscopy and optomechanics─and on which other materials can easily be deposited. We report measurements down to a minimal distance of 180 nm between a large radius of curvature (15.5 mm) glass radiator and a SiN membrane resonator. At such deep sub-wavelength distance, heat transfer is dominated by surface polariton resonances over a (0.25 mm) effective area, which is comparable to plane-plane experiments employing custom microfabricated devices. We also discuss how measurements using nanomechanical resonators create opportunities for simultaneously measuring near-field radiative heat transfer and thermal radiation forces (e.g., thermal corrections to Casimir forces).

摘要

近场辐射热传递(NFRHT)测量通常依赖于定制的微型器件,这些器件在首次展示后往往难以复制。在这里,我们使用普通的氮化硅(SiN)薄膜纳米机械谐振器来研究NFRHT,氮化硅是一种在电子显微镜和光机械等应用中广泛使用的基底,并且其他材料可以很容易地沉积在上面。我们报告了在大曲率半径(15.5毫米)的玻璃散热器与SiN薄膜谐振器之间最小距离达到180纳米时的测量结果。在如此深的亚波长距离下,热传递在一个(0.25毫米)的有效面积上由表面极化激元共振主导,这与采用定制微加工器件的平面-平面实验相当。我们还讨论了使用纳米机械谐振器进行测量如何为同时测量近场辐射热传递和热辐射力(例如,卡西米尔力的热修正)创造机会。

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