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二维铁磁体CrGeTe中与声子相关的单色太赫兹辐射及其磁调制

Phonon-Related Monochromatic THz Radiation and its Magneto-Modulation in 2D Ferromagnetic Cr Ge Te.

作者信息

Cheng Long, Li Huiping, Lin Gaoting, Yan Jian, Zhang Lei, Yang Cheng, Tong Wei, Ren Zhuang, Zhu Wang, Cong Xin, Gao Jingjing, Tan Pingheng, Luo Xuan, Sun Yuping, Zhu Wenguang, Sheng Zhigao

机构信息

Anhui Key Laboratory of Condensed Matter Physics at Extreme Conditions, High Magnetic Field Laboratory, HFIPS, Anhui, Chinese Academy of Sciences, Shushanhu Road 350, Hefei, 230031, China.

ICQD, Hefei National Laboratory for Physical Sciences at the Microscale, and Key Laboratory of Strongly-Coupled Quantum Matter Physics, Chinese Academy of Sciences, School of Physical Sciences, University of Science and Technology of China, No. 96, JinZhai Road, Baohe District, Hefei, Anhui, 230026, China.

出版信息

Adv Sci (Weinh). 2022 Jan;9(1):e2103229. doi: 10.1002/advs.202103229. Epub 2021 Oct 29.

Abstract

Searching multiple types of terahertz (THz) irradiation source is crucial for the THz technology. In addition to the conventional fermionic cases, bosonic quasi-/particles also promise energy-efficient THz wave emission. Here, by utilizing a 2D ferromagnetic Cr Ge Te crystal, first a phonon-related magneto-tunable monochromatic THz irradiation source is demonstrated. With a low-photonic-energy broadband THz pump, a strong THz irradiation with frequency ≈0.9 THz and bandwidth ≈0.25 THz can be generated and its conversion efficiency could even reach 2.1% at 160 K. Moreover, it is intriguing to find that such monochromatic THz irradiation can be efficiently modulated by external magnetic field below 160 K. According to both experimental and theoretical analyses, the emergent THz irradiation is identified as the emission from the phonon-polariton and its temperature and magnetic field dependent behaviors confirm the large spin-lattice coupling in this 2D ferromagnetic crystal. These observations provide a new route for the creation of tunable monochromatic THz source which may have great practical interests in future applications in photonic and spintronic devices.

摘要

寻找多种类型的太赫兹(THz)辐射源对太赫兹技术至关重要。除了传统的费米子情况外,玻色子准粒子也有望实现高能效的太赫兹波发射。在此,通过利用二维铁磁CrGeTe晶体,首次展示了一种与声子相关的磁可调单色太赫兹辐射源。使用低光子能量宽带太赫兹泵浦,可以产生频率约为0.9太赫兹、带宽约为0.25太赫兹的强太赫兹辐射,并且在160K时其转换效率甚至可以达到2.1%。此外,有趣的是发现在160K以下,这种单色太赫兹辐射可以被外部磁场有效调制。根据实验和理论分析,所产生的太赫兹辐射被确定为声子极化激元的发射,其温度和磁场依赖行为证实了这种二维铁磁晶体中存在大的自旋-晶格耦合。这些观察结果为创建可调谐单色太赫兹源提供了一条新途径,这在未来光子和自旋电子器件的应用中可能具有重大的实际意义。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7754/8728850/aa60d6290553/ADVS-9-2103229-g004.jpg

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