Title :
Measurements of V-band n-type InSb junction circulators
Author :
Ng, Zee M. ; Davis, Lionel E. ; Sloan, Robin
Abstract :
A V-band n-type indium antimonide (InSb) junction circulator supported in a three-port finline structure has been fabricated and measured. Broad-band operation for a semiconductor junction circulator over the frequency range 50-75 GHz at a temperature of 77 K has been demonstrated for the first time. With an applied magnetic flux density of 0.88 T, approximately 10 dB of differential isolation has been measured over the entire waveguide frequency band. The measured results also indicate that circulation is possible when the semiconductor material has εeff<0. In principle, broader bandwidths are predicted since frequency tracking can be achieved from εeff<0 to εeff>0, but the bandwidths of the circulators measured are restricted by the cutoff frequency of the V-band waveguide. Experimental evidence also showed that a disc or triangular-shaped semiconductor suspended in an E-plane junction without the finline circuit provides circulation. The experimental results clearly illustrate the broad-band behavior of semiconductor junction circulators for operation beyond 40 GHz, which is difficult to achieve with ferrite-based circulators.
Keywords :
III-V semiconductors; fin line components; indium compounds; low-temperature techniques; magnetic flux; millimetre wave circulators; 0.88 T; 50 to 75 GHz; 77 K; E-plane junction; InSb; V-band n-type InSb junction circulator measurements; V-band n-type indium antimonide junction circulator; V-band waveguide cutoff frequency; applied magnetic flux density; broad-band operation; circulator bandwidths; circulator temperature; differential isolation; disc-shaped semiconductor; finline circuit; frequency range; frequency tracking; semiconductor junction circulator; semiconductor material effective dielectric constant; three-port finline structure; triangular-shaped semiconductor; waveguide frequency band; Bandwidth; Circulators; Cutoff frequency; Density measurement; Finline; Frequency measurement; Indium; Magnetic flux density; Semiconductor waveguides; Temperature distribution;
Journal_Title :
Microwave Theory and Techniques, IEEE Transactions on
DOI :
10.1109/TMTT.2003.821924