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金属光子晶体在光波长下超普朗克热辐射的原位直接证实。

An In-situ and Direct Confirmation of Super-Planckian Thermal Radiation Emitted From a Metallic Photonic-Crystal at Optical Wavelengths.

作者信息

Lin Shawn-Yu, Hsieh Mei-Li, John Sajeev, Frey B, Bur James A, Luk Ting-Shan, Wang Xuanjie, Narayanan Shankar

机构信息

The Department of Physics, Applied Physics and Astronomy, Rensselaer Polytechnic Institute, Troy, NY, 12180, USA.

Department of Photonics, National Chiao Tung University, Hsinchu, Taiwan.

出版信息

Sci Rep. 2020 Mar 23;10(1):5209. doi: 10.1038/s41598-020-62063-2.

Abstract

Planck's law predicts the distribution of radiation energy, color and intensity, emitted from a hot object at thermal equilibrium. The Law also sets the upper limit of radiation intensity, the blackbody limit. Recent experiments reveal that micro-structured tungsten can exhibit significant deviation from the blackbody spectrum. However, whether thermal radiation with weak non-equilibrium pumping can exceed the blackbody limit in the far field remains un-answered experimentally. Here, we compare thermal radiation from a micro-cavity/tungsten photonic crystal (W-PC) and a blackbody, which are both measured from the same sample and also in-situ. We show that thermal radiation can exceed the blackbody limit by >8 times at λ = 1.7 μm resonant wavelength in the far-field. Our observation is consistent with a recent calculation by Wang and John performed for a 2D W-PC filament. This finding is attributed to non-equilibrium excitation of localized surface plasmon resonances coupled to nonlinear oscillators and the propagation of the electromagnetic waves through non-linear Bloch waves of the W-PC structure. This discovery could help create super-intense narrow band thermal light sources and even an infrared emitter with a laser-like input-output characteristic.

摘要

普朗克定律预测了处于热平衡状态的热物体所发射的辐射能量、颜色和强度的分布。该定律还设定了辐射强度的上限,即黑体极限。最近的实验表明,微结构钨可能会显著偏离黑体光谱。然而,在远场中,具有弱非平衡泵浦的热辐射是否能超过黑体极限,在实验上仍未得到解答。在这里,我们比较了微腔/钨光子晶体(W-PC)和黑体的热辐射,它们都是从同一个样品上原位测量得到的。我们表明,在远场中,热辐射在λ = 1.7μm共振波长处可以超过黑体极限8倍以上。我们的观察结果与Wang和John最近对二维W-PC细丝所做的计算结果一致。这一发现归因于与非线性振荡器耦合的局域表面等离子体共振的非平衡激发,以及电磁波通过W-PC结构的非线性布洛赫波的传播。这一发现有助于创造超强窄带热光源,甚至是具有类似激光输入输出特性的红外发射器。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/62df/7090049/6b6c0ecc7c39/41598_2020_62063_Fig1_HTML.jpg

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