Fast room-temperature imaging at terahertz (THz) and subterahertz (sub-THz) frequencies is an interesting technique that could unleash the full potential of plenty of applications in security, healthcare, and industrial production. In this Letter, we introduce micromechanical bolometers based on silicon nitride trampoline membranes as broad-range detectors down to sub-THz frequencies. They show, at the longest wavelengths, room-temperature noise-equivalent powers comparable to those of state-of-the-art commercial devices (∼100 pW Hz–1/2), which, along with the good operation speed and the easy, large-scale fabrication process, could make the trampoline membrane the next candidate for cheap room-temperature THz imaging and related applicatio...
Detection of concealed threats like guns, knifes or explosives is of prime importance at airports an...
We introduce a microwave submillimeter-wave detector based on an integrated micromesh absorber and s...
We have developed an original concept of a quasi-optical mixer based on a superconducting bolometer ...
We present a micro-mechanical terahertz (THz) detector fabricated on a silicon on insulator (SOI) su...
In this article a monolithic resonant terahertz sensor element with a noise equivalent power superio...
In this article a monolithic resonant terahertz sensor element with a noise equivalent power superio...
Terahertz imaging technology has shown great potential in many fields. As the core component of tera...
We will present experimental and theoretical investigation of room temperature high speed THz detect...
We present a novel room temperature bolometer with nanosecond response that can be used both for coh...
We study the applicability of superconducting NbN vacuum bridge bolometer arrays with room temperatu...
We present a novel room temperature bolometer with nanosecond response that can be used both for coh...
We study the applicability of superconducting NbN vacuum bridge bolometer arrays with room temperatu...
We achieve high detectivity terahertz sensing using a silicon nitride nanomechanical resonator funct...
In force sensing, optomechanics, and quantum motion experiments, it is typically advantageous to cre...
High sensitivity room temperature THz direct detectors made of YBa2Cu3O7-x nano-bridges, with a broa...
Detection of concealed threats like guns, knifes or explosives is of prime importance at airports an...
We introduce a microwave submillimeter-wave detector based on an integrated micromesh absorber and s...
We have developed an original concept of a quasi-optical mixer based on a superconducting bolometer ...
We present a micro-mechanical terahertz (THz) detector fabricated on a silicon on insulator (SOI) su...
In this article a monolithic resonant terahertz sensor element with a noise equivalent power superio...
In this article a monolithic resonant terahertz sensor element with a noise equivalent power superio...
Terahertz imaging technology has shown great potential in many fields. As the core component of tera...
We will present experimental and theoretical investigation of room temperature high speed THz detect...
We present a novel room temperature bolometer with nanosecond response that can be used both for coh...
We study the applicability of superconducting NbN vacuum bridge bolometer arrays with room temperatu...
We present a novel room temperature bolometer with nanosecond response that can be used both for coh...
We study the applicability of superconducting NbN vacuum bridge bolometer arrays with room temperatu...
We achieve high detectivity terahertz sensing using a silicon nitride nanomechanical resonator funct...
In force sensing, optomechanics, and quantum motion experiments, it is typically advantageous to cre...
High sensitivity room temperature THz direct detectors made of YBa2Cu3O7-x nano-bridges, with a broa...
Detection of concealed threats like guns, knifes or explosives is of prime importance at airports an...
We introduce a microwave submillimeter-wave detector based on an integrated micromesh absorber and s...
We have developed an original concept of a quasi-optical mixer based on a superconducting bolometer ...