On-chip terahertz systems for spectroscopy and imaging
J. E. Cunningham, Matthew B. Byrne, C. Wood, L. Dazhang
Abstract
J. E. Cunningham, Matthew B. Byrne, C. Wood, L. Dazhang
Abstract
A review is conducted of recent advances in the technology and applications of on-chip integrated terahertz systems, in which pulses of terahertz frequency radiation are generated by a photoconductive material, guided through a planar waveguide, and then detected coherently by photoconductive detection. These integrated systems are highly compact compared with typical free-space time domain terahertz spectroscopy systems, and allow much smaller sample volumes to be investigated, since they concentrate the propagating terahertz field to a length-scale far smaller than the diffraction limit. How both time-domain spectroscopy and imaging can be acheived using on-chip terahertz systems is discussed, along with some potential future applications for on-chip systems in the terahertz spectroscopy of single nanostructures.
OpenAlex reports 32 citations for this work. Citation counts describe recorded attention and do not establish research quality.
A contribution statement is not available in the OpenAlex record.
Method details are not available in the OpenAlex metadata.
Findings are not separately available in the OpenAlex metadata.
Limitations are not available in the OpenAlex metadata.
Application details are not available in the OpenAlex metadata.
A review is conducted of recent advances in the technology and applications of on-chip integrated terahertz systems, in which pulses of terahertz frequency radiation are generated by a photoconductive material, guided through a planar waveguide, and then detected coherently by photoconductive detection. These integrated systems are highly compact compared with typical free-space time domain terahertz spectroscopy systems, and allow much smaller sample volumes to be investigated, since they concentrate the propagating terahertz field to a length-scale far smaller than the diffraction limit. How both time-domain spectroscopy and imaging can be acheived using on-chip terahertz systems is discussed, along with some potential future applications for on-chip systems in the terahertz spectroscopy of single nanostructures.
Key concepts: Terahertz radiation, Terahertz spectroscopy and technology, Terahertz time-domain spectroscopy, Photomixing, Spectroscopy, Optoelectronics, Materials science, Terahertz gap