Wideband 67-116 GHz receiver development for ALMA Band 2
P. Yagoubov, T. Mroczkowski, V. Belitsky, D. Cuadrado-Calle, F., Cuttaia, G. A. Fuller, J.-D. Gallego, A. Gonzalez, K. Kaneko, P. Mena, R., Molina, R. Nesti, V. Tapia, F. Villa, M. Beltran, F. Cavaliere, J. Ceru, G., E. Chesmore, K. Coughlin, C. De Breuck, M. Fredrixon

TL;DR
This paper reports the development of a wideband, tuneable, sideband-separating receiver for ALMA Band 2 (67-116 GHz), enhancing observational capabilities with 28 GHz bandwidth per polarization, suitable for deployment in the near future.
Contribution
It introduces a novel cryogenic receiver design covering 67-116 GHz, optimized for ALMA, with successful fabrication and testing demonstrating feasibility and improved performance.
Findings
Achieved a 28 GHz instantaneous bandwidth per polarization.
Designed a cryogenic cartridge compatible with ALMA Band 2.
Validated the receiver's performance through fabrication and testing.
Abstract
ALMA has been operating since 2011, but has not yet been populated with the full suite of intended frequency bands. In particular, ALMA Band 2 (67-90 GHz) is the final band in the original ALMA band definition to be approved for production. We aim to produce a wideband, tuneable, sideband-separating receiver with 28 GHz of instantaneous bandwidth per polarisation operating in the sky frequency range 67-116 GHz. Our design anticipates new ALMA requirements following the recommendations in the 2030 ALMA Development Roadmap. The cryogenic cartridge is designed to be compatible with the ALMA Band 2 cartridge slot, where the coldest components -- the feedhorns, orthomode transducers, and cryogenic low noise amplifiers -- operate at a temperature of 15 K. We use multiple simulation methods and tools to optimise our designs for both the passive optics and the active components. The cryogenic…
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