Ultrafast imaging of terahertz electric waveforms using quantum dots

被引:29
|
作者
Heindl, Moritz B. [1 ]
Kirkwood, Nicholas [2 ]
Lauster, Tobias [3 ]
Lang, Julia A. [1 ]
Retsch, Markus [3 ]
Mulvaney, Paul [2 ]
Herink, Georg [1 ]
机构
[1] Univ Bayreuth, Expt Phys Ultrafast Dynam 8, Bayreuth, Germany
[2] Univ Melbourne, Sch Chem, ARC Ctr Excellence Excitor Sci, Melbourne, Vic, Australia
[3] Univ Bayreuth, Phys Chem 1, Bayreuth, Germany
基金
欧洲研究理事会;
关键词
FIELD; SINGLE; LUMINESCENCE; MICROSCOPY; GUIDES;
D O I
10.1038/s41377-021-00693-5
中图分类号
O43 [光学];
学科分类号
070207 ; 0803 ;
摘要
Microscopic electric fields govern the majority of elementary excitations in condensed matter and drive electronics at frequencies approaching the Terahertz (THz) regime. However, only few imaging schemes are able to resolve subwavelength fields in the THz range, such as scanning-probe techniques, electro-optic sampling, and ultrafast electron microscopy. Still, intrinsic constraints on sample geometry, acquisition speed and field strength limit their applicability. Here, we harness the quantum-confined Stark-effect to encode ultrafast electric near-fields into colloidal quantum dot luminescence. Our approach, termed Quantum-probe Field Microscopy (QFIM), combines far-field imaging of visible photons with phase-resolved sampling of electric waveforms. By capturing ultrafast movies, we spatio-temporally resolve a Terahertz resonance inside a bowtie antenna and unveil the propagation of a Terahertz waveguide excitation deeply in the sub-wavelength regime. The demonstrated QFIM approach is compatible with strong-field excitation and sub-micrometer resolution-introducing a direct route towards ultrafast field imaging of complex nanodevices inoperando.
引用
收藏
页数:6
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