YesThis paper presents a novel 2D meta-surface wall to increase the isolation between microstrip patch radiators in an antenna array that is operating in the teraherz (THz) band of 139–141 GHz for applications including communications, medical and security screening systems. The metasurface unit-cell comprises conjoined twin ‘Y-shape’ microstrip structures, which are inter-digitally interleaved together to create the meta-surface wall. The proposed meta-surface wall is free of via holes and defected ground-plane hence easing its fabrication. The meta-surface wall is inserted tightly between the radiating elements to reduce surface wave mutual coupling. For best isolation performance the wall is oriented orthogonal to the patch antennas. Th...
In this paper, a meta-surface is developed as an effective solution for reducing mutual coupling bet...
The paper presents a technique to enhance the isolation between adjacent radiating elements that is ...
YesA decoupling metamaterial (MTM) configuration based on fractal electromagnetic-bandgap (EMBG) str...
This paper presents a novel 2D meta-surface wall to increase the isolation between microstrip patch ...
This paper presents a novel 2D meta-surface wall to increase the isolation between microstrip patch ...
This paper presents a novel 2D meta-surface wall to increase the isolation between microstrip patch ...
This paper presents a novel 2D meta-surface wall to increase the isolation between microstrip patch ...
YesAn effective method is presented for suppressing mutual coupling between adjacent radiating eleme...
YesThis article presents a unique technique to enhance isolation between transmit/receive radiating ...
An effective method is presented for suppressing mutual coupling between adjacent radiating elements...
The paper presents a technique to enhance the isolation between adjacent radiating elements that is ...
The paper presents a technique to enhance the isolation between adjacent radiating elements which is...
The paper presents a technique to enhance the isolation between adjacent radiating elements which is...
A simple and practical technique for reducing the mutual coupling between neighbouring antennas is p...
In this paper, a meta-surface is developed as an effective solution for reducing mutual coupling bet...
The paper presents a technique to enhance the isolation between adjacent radiating elements that is ...
YesA decoupling metamaterial (MTM) configuration based on fractal electromagnetic-bandgap (EMBG) str...
This paper presents a novel 2D meta-surface wall to increase the isolation between microstrip patch ...
This paper presents a novel 2D meta-surface wall to increase the isolation between microstrip patch ...
This paper presents a novel 2D meta-surface wall to increase the isolation between microstrip patch ...
This paper presents a novel 2D meta-surface wall to increase the isolation between microstrip patch ...
YesAn effective method is presented for suppressing mutual coupling between adjacent radiating eleme...
YesThis article presents a unique technique to enhance isolation between transmit/receive radiating ...
An effective method is presented for suppressing mutual coupling between adjacent radiating elements...
The paper presents a technique to enhance the isolation between adjacent radiating elements that is ...
The paper presents a technique to enhance the isolation between adjacent radiating elements which is...
The paper presents a technique to enhance the isolation between adjacent radiating elements which is...
A simple and practical technique for reducing the mutual coupling between neighbouring antennas is p...
In this paper, a meta-surface is developed as an effective solution for reducing mutual coupling bet...
The paper presents a technique to enhance the isolation between adjacent radiating elements that is ...
YesA decoupling metamaterial (MTM) configuration based on fractal electromagnetic-bandgap (EMBG) str...