We have measured the noise temperature of a single, sensitive superconducting NbN hot electron bolometer (HEB) mixer in a frequency range from 1.6 to 5.3 THz, using a setup with all the key components in vacuum. By analyzing the measured receiver noise temperature using a quantum noise (QN) model for HEB mixers, we confirm the effect of QN. The QN is found to be responsible for about half of the receiver noise at the highest frequency in our measurements. The ?-factor (the quantum efficiency of the HEB) obtained experimentally agrees reasonably well with the calculated value.Kavli Institute of NanoscienceApplied Science
We report the sensitivity of a superconducting NbN hot electron bolometer mixer integrated with a ti...
Abstract- NbN hot electron bolometer mixers (HEBM) are at this moment the best heterodyne receivers ...
We present the measurements and the theoretical model on the frequency dependent noise temperature o...
We have measured the noise temperature of a single, sensitive superconducting NbN hot electron bolom...
This paper summarizes our receiver noise temperature data of NbN HEB mixers obtained at a number of ...
Abstract— Superconducting NbN hot electron bolometer (HEB) mixers are so far the most sensitive dete...
Abstract In this paper we first review general quantum mechanical limits on the sensitivity of heter...
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...
We have studied the sensitivity of a superconducting NbN hot electron bolometer mixer integrated wit...
We report the measured sensitivities of a superconducting NbN hot electron bolometer (HEB) heterodyn...
ABSTRACT-In recent years, improvements in device development and quasi-optical coupling techniques u...
We report the sensitivity of a superconducting NbN hot electron bolometer mixer integrated with a ti...
Abstract- NbN hot electron bolometer mixers (HEBM) are at this moment the best heterodyne receivers ...
We present the measurements and the theoretical model on the frequency dependent noise temperature o...
We have measured the noise temperature of a single, sensitive superconducting NbN hot electron bolom...
This paper summarizes our receiver noise temperature data of NbN HEB mixers obtained at a number of ...
Abstract— Superconducting NbN hot electron bolometer (HEB) mixers are so far the most sensitive dete...
Abstract In this paper we first review general quantum mechanical limits on the sensitivity of heter...
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...
We have studied the sensitivity of a superconducting NbN hot electron bolometer mixer integrated wit...
We report the measured sensitivities of a superconducting NbN hot electron bolometer (HEB) heterodyn...
ABSTRACT-In recent years, improvements in device development and quasi-optical coupling techniques u...
We report the sensitivity of a superconducting NbN hot electron bolometer mixer integrated with a ti...
Abstract- NbN hot electron bolometer mixers (HEBM) are at this moment the best heterodyne receivers ...
We present the measurements and the theoretical model on the frequency dependent noise temperature o...