Sun Kaili, Levy Uriel, Han Zhanghua
Shandong Provincial Key Laboratory of Optics and Photonic Devices, Center of Light Manipulation and Applications, School of Physics and Electronics, Shandong Normal University, Jinan 250358, China.
Department of Applied Physics, Hebrew University of Jerusalem, Jerusalem 91904, Israel.
Nano Lett. 2024 Jan 17;24(2):764-769. doi: 10.1021/acs.nanolett.3c04587. Epub 2024 Jan 2.
Thermal emissions with high coherence, although not as high as those of lasers, still play a crucial role in many practical applications. In this work, by exploiting the geometric perturbation-induced optical lattice tripling and the associated Brillion zone folding effect, we propose and investigate thermal emissions in the mid-infrared with simultaneous high temporal and spatial coherence. In contrast with the case of period-doubling perturbation in our previous work, the steeper part of the guided mode dispersion band will be folded to the high-symmetry Γ point in the ternary grating. In this case, a specific emission wavelength corresponds to only a very small range of wavevectors. Consequently, apart from the high temporal coherence characterized by an experimental bandwidth around 30 nm, the achieved thermal emissions also feature ultrahigh spatial coherence. Calculations show that at the thermal emission wavelengths in the mid-infrared, the spatial coherence length can easily reach up to mm scale.
具有高相干性的热辐射,尽管不如激光的相干性高,但在许多实际应用中仍起着至关重要的作用。在这项工作中,通过利用几何微扰诱导的光学晶格三倍频和相关的布里渊区折叠效应,我们提出并研究了具有同时高时间和空间相干性的中红外热辐射。与我们之前工作中的倍频微扰情况不同,导模色散带的较陡部分将折叠到三元光栅中的高对称Γ点。在这种情况下,特定的发射波长仅对应于非常小的波矢范围。因此,除了以约30nm的实验带宽为特征的高时间相干性外,所实现的热辐射还具有超高空间相干性。计算表明,在中红外热辐射波长处,空间相干长度很容易达到毫米量级。