We present a surface emitting THz quantum cascade laser frequency comb with an adjustable chromatic dispersion compensation via a mechanically tunable GTI cavity. Surface emission and high optical feedback into the laser cavity are achieved by a planarized ridge waveguide design with low reflectivity facets and two broadband patch array antennas for coupling to an external mirror (back side) and for power extraction (front side). We demonstrate direct and reproducible manipulation of the frequency comb state, specifically the comb stability and beatnote frequency tuning, by controlling the position of an external movable mirror
© 2019 SPIE. Quantum cascade laser-based frequency combs have attracted much attention as of late fo...
Active control of the amplitude and frequency of terahertz sources is an essential prerequisite for ...
We have developed terahertz frequency quantum cascade lasers that exploit a double-periodicity distr...
We present a planarized waveguide cavity with an integrated broadband output coupler that improves b...
Miniaturized frequency combs (FCs) can be self-generated at terahertz (THz) frequencies through four...
The technological solutions and optical configurations employed to tune the emission frequency of qu...
Full phase control of terahertz (THz)-emitting quantum cascade laser (QCL) combs has recently been d...
Photonic engineering of the terahertz emission from a quantum cascade laser (QCL) is fundamental for...
We demonstrate a frequency tunable external cavity terahertz quantum cascade laser using an abutted ...
Tunable quantum cascade lasers operating in the terahertz frequency range are demonstrated. By using...
We present a new planarized waveguide geometry for THz quantum cascade laser frequency combs with im...
The present study proposes a terahertz quantum cascade laser frequency comb (THz QCL FC) with a semi...
Quasi-crystal distributed feedback lasers do not require any form of mirror cavity to amplify and ex...
We demonstrate a tunable terahertz quantum cascade laser using an abutted silicon lens and grating f...
Thesis (S.M.)--Massachusetts Institute of Technology, Dept. of Electrical Engineering and Computer S...
© 2019 SPIE. Quantum cascade laser-based frequency combs have attracted much attention as of late fo...
Active control of the amplitude and frequency of terahertz sources is an essential prerequisite for ...
We have developed terahertz frequency quantum cascade lasers that exploit a double-periodicity distr...
We present a planarized waveguide cavity with an integrated broadband output coupler that improves b...
Miniaturized frequency combs (FCs) can be self-generated at terahertz (THz) frequencies through four...
The technological solutions and optical configurations employed to tune the emission frequency of qu...
Full phase control of terahertz (THz)-emitting quantum cascade laser (QCL) combs has recently been d...
Photonic engineering of the terahertz emission from a quantum cascade laser (QCL) is fundamental for...
We demonstrate a frequency tunable external cavity terahertz quantum cascade laser using an abutted ...
Tunable quantum cascade lasers operating in the terahertz frequency range are demonstrated. By using...
We present a new planarized waveguide geometry for THz quantum cascade laser frequency combs with im...
The present study proposes a terahertz quantum cascade laser frequency comb (THz QCL FC) with a semi...
Quasi-crystal distributed feedback lasers do not require any form of mirror cavity to amplify and ex...
We demonstrate a tunable terahertz quantum cascade laser using an abutted silicon lens and grating f...
Thesis (S.M.)--Massachusetts Institute of Technology, Dept. of Electrical Engineering and Computer S...
© 2019 SPIE. Quantum cascade laser-based frequency combs have attracted much attention as of late fo...
Active control of the amplitude and frequency of terahertz sources is an essential prerequisite for ...
We have developed terahertz frequency quantum cascade lasers that exploit a double-periodicity distr...