Hot-electron bolometer devices, used successfully in low noise heterodyne mixing at frequencies up to 2.5 THz, have been analyzed. A distributed temperature numerical model of the NbN bridge, based on a local electron and a phonon temperature, is used to model pumped IV curves and understand the physical conditions during the mixing process. We argue that the mixing is predominantly due to the strongly temperature dependent local resistivity of the NbN. Experimentally we identify the origins of different transition temperatures in a real HEB device, suggesting the importance of the intrinsic resistive transition of the superconducting bridge in the modeling.</p
International audienceTo investigate the THz mixing performance of YBCO hot electron bolometers (HEB...
Abstract — A hot spot mixer model for phonon cooled hot electron bolometers is set up to accurately ...
We present the hotspot mixing as a new principle of heterodyne mixing in a superconducting hotelectr...
Hot-electron bolometer devices, used successfully in low noise heterodyne mixing at frequencies up t...
Improved and reproducible heterodyne mixing (noise temperatures of 950 K at 2.5 THz) has been realiz...
We present a new model for the description of the resistive transition of Nb diffusion-cooled hot el...
We present a model for the description of the resistive transition in hot-electron bolometer mixers....
The intermediate frequency (IF) characteristics, the frequency dependent IF impedance, and the mixer...
Phonon cooled hot electron bolometers (HEB) show smaller noise temperatures in mixer applications ab...
We have studied the sensitivity of a superconducting NbN hot electron bolometer mixer integrated wit...
We have studied the sensitivity of a superconducting NbN hot electron bolometer mixer integrated wit...
Abstract — We present our recent results of the fabrication and testing of NbN hot-electron bolomete...
International audienceThis paper presents the modeling and measurement of a quasioptical niobium nit...
We present a physically consistent interpretation of the dc electrical properties of niobiumnitride ...
We present the hotspot mixing as a new principle of heterodyne mixing in a superconducting hotelectr...
International audienceTo investigate the THz mixing performance of YBCO hot electron bolometers (HEB...
Abstract — A hot spot mixer model for phonon cooled hot electron bolometers is set up to accurately ...
We present the hotspot mixing as a new principle of heterodyne mixing in a superconducting hotelectr...
Hot-electron bolometer devices, used successfully in low noise heterodyne mixing at frequencies up t...
Improved and reproducible heterodyne mixing (noise temperatures of 950 K at 2.5 THz) has been realiz...
We present a new model for the description of the resistive transition of Nb diffusion-cooled hot el...
We present a model for the description of the resistive transition in hot-electron bolometer mixers....
The intermediate frequency (IF) characteristics, the frequency dependent IF impedance, and the mixer...
Phonon cooled hot electron bolometers (HEB) show smaller noise temperatures in mixer applications ab...
We have studied the sensitivity of a superconducting NbN hot electron bolometer mixer integrated wit...
We have studied the sensitivity of a superconducting NbN hot electron bolometer mixer integrated wit...
Abstract — We present our recent results of the fabrication and testing of NbN hot-electron bolomete...
International audienceThis paper presents the modeling and measurement of a quasioptical niobium nit...
We present a physically consistent interpretation of the dc electrical properties of niobiumnitride ...
We present the hotspot mixing as a new principle of heterodyne mixing in a superconducting hotelectr...
International audienceTo investigate the THz mixing performance of YBCO hot electron bolometers (HEB...
Abstract — A hot spot mixer model for phonon cooled hot electron bolometers is set up to accurately ...
We present the hotspot mixing as a new principle of heterodyne mixing in a superconducting hotelectr...