PT Journal AU Schwaab, GW Sirmain, G Schubert, J Hubers, H Gol'tsman, G Cherednichenko, S Verevkin, A Voronov, B Gershenzon, E TI Investigation of NbN phonon-cooled HEB mixers at 2.5 THz SO IEEE Trans. Appl. Supercond. JI IEEE Trans. Appl. Supercond. PY 1999 BP 4233 EP 4236 VL 9 IS 2 DI 10.1109/77.783959 DE NbN HEB mixers AB The development of superconducting hot electron bolometric (HEB) mixers has been a big step forward in the direction of quantum noise limited mixer performance at THz frequencies. Such mixers are crucial for the upcoming generation of airborne and spaceborne THz heterodyne receivers. In this paper we report on new results on a phonon-cooled NbN HEB mixer using e-beam lithography. The superconducting film is 3 nm thick. The mixer is 0.2 μm long and 1.5 μm wide and it is integrated in a spiral antenna on a Si substrate. The device is quasi-optically coupled through a Si lens and a dielectric beam combiner to the radiation of an optically pumped FIR ring gas laser cavity. The performance of the mixer at different THz frequencies from 0.69 to 2.55 THz with an emphasis on 2.52 THz is demonstrated. At 2.52 THz minimum DSB noise temperatures of 4200 K have been achieved at an IF of 1.5 GHz and a bandwidth of 40 MHz with the mixer mounted in a cryostat and a 0.8 m long signal path in air. ER