We presented the design and experimental results of a new sideband-separating (2SB) mixer for 600-720 GHz (ALMA Band 9). Although designed following the classical quadrature hybrid architecture, the emphasis of the optimization was this time not placed on ultimate phase and amplitude balance in the hybrid, but on the reduction and active suppression of reflections and standing waves. It turns out that, once the phase and the amplitude are sufficiently balanced, the image rejection ratio (IRR) starts being dominated by unbalanced parasitic reflections in the signal path, and further perfection of the hybrid's balance is not the way toward higher IRR. Four operational waveguide blocks were produced. IRRs above 15 dB over the entire band were ...
As the Atacama Large Millimeter/submillimeter Array (ALMA) nears completion, 73 dual-polarization re...
The Atacama Large Millimeter Array (ALMA) is the largest radio astronomical enterprise ever proposed...
For high-frequency observational bands like ALMA (Atacama Large Millimeter Array) Band 9 (600—720 GH...
We presented the design and experimental results of a new sideband-separating (2SB) mixer for 600-72...
We presented the design and experimental results of a new sideband-separating (2SB) mixer for 600-72...
We presented the design and experimental results of a new sideband-separating (2SB) mixer for 600–72...
We present the design and results of characterization of a new sideband separating (2SB) mixer for 8...
A modular sideband-separating (2SB) receiver for 600-720 GHz has been built and tested. The used mod...
Over the last few years, we developed high-performance sideband- separating (2SB) mixers for 600-720...
The Atacama Large Millimeter Array (ALMA) is the largest radio astronomical enterprise ever proposed...
In the modular sideband-separating mixers that we built over the last years, we observe a clear anti...
The ALMA Band 9 receiver cartridge (600-720 GHz) based on Dual Sideband (DSB) superconductor-insulat...
As the Atacama Large Millimeter/submillimeter Array (ALMA) nears completion, 73 dual-polarization re...
The Atacama Large Millimeter Array (ALMA) is the largest radio astronomical enterprise ever proposed...
For high-frequency observational bands like ALMA (Atacama Large Millimeter Array) Band 9 (600—720 GH...
We presented the design and experimental results of a new sideband-separating (2SB) mixer for 600-72...
We presented the design and experimental results of a new sideband-separating (2SB) mixer for 600-72...
We presented the design and experimental results of a new sideband-separating (2SB) mixer for 600–72...
We present the design and results of characterization of a new sideband separating (2SB) mixer for 8...
A modular sideband-separating (2SB) receiver for 600-720 GHz has been built and tested. The used mod...
Over the last few years, we developed high-performance sideband- separating (2SB) mixers for 600-720...
The Atacama Large Millimeter Array (ALMA) is the largest radio astronomical enterprise ever proposed...
In the modular sideband-separating mixers that we built over the last years, we observe a clear anti...
The ALMA Band 9 receiver cartridge (600-720 GHz) based on Dual Sideband (DSB) superconductor-insulat...
As the Atacama Large Millimeter/submillimeter Array (ALMA) nears completion, 73 dual-polarization re...
The Atacama Large Millimeter Array (ALMA) is the largest radio astronomical enterprise ever proposed...
For high-frequency observational bands like ALMA (Atacama Large Millimeter Array) Band 9 (600—720 GH...