The existence of multiple reflections in terahertz optical system causes numerous problems in applications ranging from astronomical to medical instrumentation. We have performed a detailed theoretical study, using waveguide and free-space modal matching, of the high-Q modes that appear on THz optical paths. Highly accurate measurements at 0.48 THz reproduce in detail the complex behaviour that was predicted theoretically. This work opens up the possibility of designing schemes for removing these troublesome effects
We present a detailed analysis and comparison of dielectric waveguides made of CdTe, GaP, GaAs and I...
Thesis (S.M.)--Massachusetts Institute of Technology, Dept. of Electrical Engineering and Computer S...
We present a detailed analysis and comparison of dielectric waveguides made of CdTe, GaP, GaAs and I...
The existence of multiple reflections in terahertz optical system causes numerous problems in applic...
The quality (Q) factor of metamaterial resonances is limited by the radiative and non-radiative loss...
This research includes theoretical analysis and experimental testing of terahertz systems operating ...
The THz region is a burgeoning field of research with applications in spectroscopy, integrated circu...
We report on the first experimental demonstration of terahertz (THz) whispering-gallery modes (WGMs)...
Two distinct branches of optics are combined in this work: Time-domain terahertz spectroscopy, and p...
We demonstrate terahertz (THz) frequency laser emission around 3.2 THz from localized modes in one-d...
International audienceIn this paper, we study terahertz generation through optical rectification in ...
Laser technology has seen significant development since its inception in 1960. After the first exper...
We theoretically demonstrate a resonant modulation of THz waves with photo-designed metasurfaces. Ou...
Achieving high quality (Q)-factor resonant modes allows for drastic improvement of performance in ma...
Terahertz time-domain spectroscopy accesses the frequency range between 100 GHz and 5 THz by using t...
We present a detailed analysis and comparison of dielectric waveguides made of CdTe, GaP, GaAs and I...
Thesis (S.M.)--Massachusetts Institute of Technology, Dept. of Electrical Engineering and Computer S...
We present a detailed analysis and comparison of dielectric waveguides made of CdTe, GaP, GaAs and I...
The existence of multiple reflections in terahertz optical system causes numerous problems in applic...
The quality (Q) factor of metamaterial resonances is limited by the radiative and non-radiative loss...
This research includes theoretical analysis and experimental testing of terahertz systems operating ...
The THz region is a burgeoning field of research with applications in spectroscopy, integrated circu...
We report on the first experimental demonstration of terahertz (THz) whispering-gallery modes (WGMs)...
Two distinct branches of optics are combined in this work: Time-domain terahertz spectroscopy, and p...
We demonstrate terahertz (THz) frequency laser emission around 3.2 THz from localized modes in one-d...
International audienceIn this paper, we study terahertz generation through optical rectification in ...
Laser technology has seen significant development since its inception in 1960. After the first exper...
We theoretically demonstrate a resonant modulation of THz waves with photo-designed metasurfaces. Ou...
Achieving high quality (Q)-factor resonant modes allows for drastic improvement of performance in ma...
Terahertz time-domain spectroscopy accesses the frequency range between 100 GHz and 5 THz by using t...
We present a detailed analysis and comparison of dielectric waveguides made of CdTe, GaP, GaAs and I...
Thesis (S.M.)--Massachusetts Institute of Technology, Dept. of Electrical Engineering and Computer S...
We present a detailed analysis and comparison of dielectric waveguides made of CdTe, GaP, GaAs and I...