Wehmeier Lukas, Liu Mengkun, Park Suji, Jang Houk, Basov D N, Homes Christopher C, Carr G Lawrence
National Synchrotron Light Source II, Brookhaven National Laboratory; Upton, New York 11973, United States.
Department of Physics and Astronomy, Stony Brook University; Stony Brook, New York 11794, United States.
ACS Photonics. 2023 Dec 8;10(12):4329-4339. doi: 10.1021/acsphotonics.3c01148. eCollection 2023 Dec 20.
While near-field infrared nanospectroscopy provides a powerful tool for nanoscale material characterization, broadband nanospectroscopy of elementary material excitations in the single-digit terahertz (THz) range remains relatively unexplored. Here, we study liquid-Helium-cooled photoconductive HgCdTe (MCT) for use as a fast detector in near-field nanospectroscopy. Compared to the common = 77 K operation, liquid-Helium cooling reduces the MCT detection threshold to ∼22 meV, improves the noise performance, and yields a response bandwidth exceeding 10 MHz. These improved detector properties have a profound impact on the near-field technique, enabling unprecedented broadband nanospectroscopy across a range of 5 to >50 THz (175 to >1750 cm, or <6 to 57 μm), i.e., covering what is commonly known as the "THz gap". Our approach has been implemented as a user program at the National Synchrotron Light Source II, Upton, USA, where we showcase ultrabroadband synchrotron nanospectroscopy of phonons in ZnSe (∼7.8 THz) and BaF (∼6.7 THz), as well as hyperbolic phonon polaritons in GeS (6-8 THz).
虽然近场红外纳米光谱学为纳米级材料表征提供了一个强大的工具,但在个位数太赫兹(THz)范围内对基本材料激发进行宽带纳米光谱研究仍相对未被探索。在这里,我们研究了液氦冷却的光电导HgCdTe(MCT),将其用作近场纳米光谱学中的快速探测器。与常见的77 K运行相比,液氦冷却将MCT的探测阈值降低到约22毫电子伏特,改善了噪声性能,并产生了超过10 MHz的响应带宽。这些改进的探测器特性对近场技术产生了深远影响,实现了前所未有的5至>50 THz(175至>1750厘米,或<6至57微米)范围内的宽带纳米光谱学,即覆盖了通常所说的“太赫兹间隙”。我们的方法已作为一个用户程序在美国阿普顿的国家同步辐射光源II上实施,在那里我们展示了ZnSe(约7.8 THz)和BaF(约6.7 THz)中声子的超宽带同步辐射纳米光谱学,以及GeS(6 - 8 THz)中的双曲线声子极化激元。