We have studied the sensitivity of a superconducting NbN hot electron bolometer mixer integrated with a spiral antenna at 4.3 THz. Using hot/cold blackbody loads and a beam splitter all in vacuum, we measured a double sideband receiver noise temperature of 1300 K at the optimum local oscillator (LO) power of 330 nW, which is about 12 times the quantum noise (h nu/2k(B)). Our result indicates that there is no sign of degradation of the mixing process at the superterahertz frequencies. Moreover, a measurement method is introduced which allows us for an accurate determination of the sensitivity despite LO power fluctuations. (C) 2007 American Institute of Physics
We report the measured sensitivities of a superconducting NbN hot electron bolometer (HEB) heterodyn...
We have measured the noise temperature of a single, sensitive superconducting NbN hot electron bolom...
We have measured the noise temperature of a single, sensitive superconducting NbN hot electron bolom...
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 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 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 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...
We report the measured sensitivities of a superconducting NbN hot electron bolometer (HEB) heterodyn...
We have measured the noise temperature of a single, sensitive superconducting NbN hot electron bolom...
We have measured the noise temperature of a single, sensitive superconducting NbN hot electron bolom...
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 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 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 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...
We report the measured sensitivities of a superconducting NbN hot electron bolometer (HEB) heterodyn...
We have measured the noise temperature of a single, sensitive superconducting NbN hot electron bolom...
We have measured the noise temperature of a single, sensitive superconducting NbN hot electron bolom...