论文标题

在大面积的II DIRAC半学PTTE2中观察到负Thz的光电导率

Observation of Negative THz Photoconductivity in Large Area Type-II Dirac Semimetal PtTe2

论文作者

Suo, Peng, Zhang, Huiyun, Yan, Shengnan, Zhang, Wenjie, Fu, Jibo, Lin, Xian, Hao, Song, Jin, Zuanming, Zhang, Yuping, Zhang, Chao, Miao, Feng, Liang, Shi-Jun, Ma, Guohong

论文摘要

作为新出现的II型DIRAC半学型,铂醇蛋白酶(PTTE2)从其他2D贵族 - 过渡金属二核化剂中脱颖而出,可用于独特的结构和新颖的物理特性,例如高载载迁移率,高载载,强大的电子偶联和可调的带状群体,使PTLEY在ptley中,适用于ptley,以实现valley,以实现valleon,以实现范围,以实现范围,以实现范围,以实现范围,以实现范围。红外探测器。尽管已经对PTTE2的运输特性进行了广泛的研究,但非平衡载体的动力学几乎没有被评估。本文中,我们采用光泵 - terahertz(THZ)探针光谱(OPTP)来系统地研究具有不同泵相,温度和膜厚度的PTTE2薄膜的光载体动力学。光激发后,5 nm PTTE2膜的光电导率(PC)最初显示出突然增加,而THZ PC在亚平时时间尺度上变成负值,然后延长了持续数百次picseconds(ps)的延长恢复过程。在5 nm PTTE2膜中观察到的这种不寻常的THZ PC响应在2 nm PTTE2膜中不存在。由于强烈的电子 - 模式声子耦合,我们将意外的负THZ PC分配为小极极形成,这是通过泵通量和温度依赖性测量以及拉曼光谱法进一步证实的。此外,我们的研究给出了顺序载体冷却和极化子形成的子秒时间尺度。本研究提供了对光激发时II迪拉克半含量半含量的光载体的基本动力学演化机制的深入见解,这对于设计基于PTTE2的基于PTTE2的光电设备至关重要。

As a newly emergent type-II Dirac semimetal, Platinum Telluride (PtTe2) stands out from other 2D noble-transition-metal dichalcogenides for the unique structure and novel physical properties, such as high carrier mobility, strong electron-phonon coupling and tunable bandgap, which make the PtTe2 a good candidate for applications in optoelectronics, valleytronics and far infrared detectors. Although the transport properties of PtTe2 have been studied extensively, the dynamics of the nonequilibrium carriers remain nearly uninvestigated. Herein we employ optical pump-terahertz (THz) probe spectroscopy (OPTP) to systematically study the photocarrier dynamics of PtTe2 thin films with varying pump fluence, temperature, and film thickness. Upon photoexcitation the THz photoconductivity (PC) of 5 nm PtTe2 film shows abrupt increase initially, while the THz PC changes into negative value in a subpicosecond time scale, followed by a prolonged recovery process that lasted hundreds of picoseconds (ps). This unusual THz PC response observed in the 5 nm PtTe2 film was found to be absent in a 2 nm PtTe2 film. We assign the unexpected negative THz PC as the small polaron formation due to the strong electron-Eg-mode phonon coupling, which is further substantiated by pump fluence- and temperature-dependent measurements as well as the Raman spectroscopy. Moreover, our investigations give a subpicosecond time scale of sequential carrier cooling and polaron formation. The present study provides deep insights into the underlying dynamics evolution mechanisms of photocarrier in type-II Dirac semimetal upon photoexcitation, which is fundamental importance for designing PtTe2-based optoelectronic devices.

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