Ji Zijie, Zhang Ruan, Zhu Shuangxing, Gu Feifan, Jin Yunmin, Xie Binghe, Wu Jiaxin, Cai Xinghan
National Key Laboratory of Science and Technology on Micro/Nano Fabrication, Shanghai Jiao Tong University, Shanghai 200240, China.
Department of Micro/Nano Electronics, School of Electronic Information and Electrical Engineering, Shanghai Jiao Tong University, Shanghai 200240, China.
Nanomaterials (Basel). 2023 Jan 19;13(3):421. doi: 10.3390/nano13030421.
The photo-induced superconducting phase transition is widely used in probing the physical properties of correlated electronic systems and to realize broadband photodetection with extremely high responsivity. However, such photoresponse is usually insensitive to electrostatic doping due to the high carrier density of the superconductor, restricting its applications in tunable optoelectronic devices. In this work, we demonstrate the gate voltage modulation to the photoresponsivity in a two-dimensional NbSe-graphene heterojunction. The superconducting critical current of the NbSe relies on the gate-dependent hot carrier generation in graphene via the Joule heating effect, leading to the observed shift of both the magnitude and peak position of the photoresponsivity spectra as the gate voltage changes. This heating effect is further confirmed by the temperature and laser-power-dependent characterization of the photoresponse. In addition, we investigate the spatially-resolved photocurrent, finding that the superconductivity is inhomogeneous across the junction area. Our results provide a new platform for designing tunable superconducting photodetector and indicate that the photoresponse could be a powerful tool in studying the local electronic properties and phase transitions in low-dimensional superconducting systems.
光致超导相变被广泛应用于探测关联电子系统的物理性质以及实现具有极高响应度的宽带光探测。然而,由于超导体的载流子密度高,这种光响应通常对静电掺杂不敏感,限制了其在可调谐光电器件中的应用。在这项工作中,我们展示了二维NbSe-石墨烯异质结中栅极电压对光响应度的调制。NbSe的超导临界电流依赖于通过焦耳热效应在石墨烯中产生的与栅极相关的热载流子,导致随着栅极电压变化,光响应度光谱的幅度和峰值位置都出现了观测到的偏移。光响应的温度和激光功率依赖特性进一步证实了这种热效应。此外,我们研究了空间分辨光电流,发现整个结区域的超导性是不均匀的。我们的结果为设计可调谐超导光电探测器提供了一个新平台,并表明光响应可能是研究低维超导系统中局部电子性质和相变的有力工具。