James Franck Institute, University of Chicago, Chicago, IL 60637, USA.
Nanotechnology. 2012 May 4;23(17):175705. doi: 10.1088/0957-4484/23/17/175705.
Room temperature photodetection with HgTe colloidal quantum films is reported between 2 and 5 μm for particles of sizes between ~5 and ~12 nm diameter, and photodetection extends to 7 μm at 80 K. The size-tuning of the absorption of HgTe colloidal quantum dots, their optical cross section and the infrared absorption depth of films are measured. The tuning with radius is empirically given by [see formula in text] where R is in nm. The optical cross section of the colloidal dots at 415 nm is approximately proportional to their volume and given by σ(Hg)(415) = 2.6 ± 0.4 10(-17) cm(2)/mercury atom. The size-dependent optical cross section at the band edge ~1.5 10(-15) cm(2) is consistent with the expected oscillator strength of the quantum dots. The absorption depth of HgTe colloidal dot films is short, about 1-2 μm, which is an advantage for thin film devices. These properties agree rather well with the expectation from the k · p model. HgTe colloidal quantum dot thin films show a strong tuning with temperature with a large positive thermal shift between 0.4 and 0.2 meV K(-1), decreasing with decreasing size within the size range studied and this is attributed primarily to electron-phonon effects.
报道了 HgTe 胶体量子薄膜在 2 到 5μm 之间的室温光电探测性能,适用于直径约为 5 到 12nm 的颗粒,在 80K 时光电探测可扩展至 7μm。测量了 HgTe 胶体量子点的吸收、光学截面和薄膜红外吸收深度的尺寸调谐。调谐半径经验上由[见文中公式]给出,其中 R 以 nm 为单位。胶体点在 415nm 的光学截面与它们的体积大致成正比,由 σ(Hg)(415) = 2.6 ± 0.4 10(-17) cm(2)/汞原子给出。在带边约 1.5 10(-15) cm(2)的尺寸相关光学截面与量子点的预期振子强度一致。HgTe 胶体点薄膜的吸收深度较短,约为 1-2μm,这对薄膜器件是一个优势。这些性质与 k · p 模型的预期相当吻合。HgTe 胶体量子点薄膜表现出很强的温度调谐特性,在 0.4 到 0.2meV K(-1)之间具有很大的正热偏移,随着尺寸的减小而减小,在所研究的尺寸范围内,这主要归因于电子-声子相互作用。