We present the design, implementation, and characterization of the optics of ALMA Band 1, the lowest frequency band in the most advanced radio astronomical telescope. Band 1 covers the broad frequency range from 35 to 50 GHz, with the goal of minor degradation up to 52 GHz. This is, up to now, the largest fractional bandwidth of all ALMA bands. Since the optics is the first subsystem of any receiver, low noise figure and maximum aperture efficiency are fundamental for best sensitivity. However, a conjunction of several factors (small cryostat apertures, mechanical constraints, and cost limitations) makes extremely challenging to achieve these goals. To overcome these problems, the optics presented here includes two innovative solutions, a c...
Context. The Atacama Large Millimeter/submillimeter Array (ALMA) has been in operation since 2011, b...
ALMA Band 1 receiver covering 35-50 GHz is with the largest relative bandwidth among ten ALMA bands....
This paper describes the design and development of the ALMA Band 9 receiver cartridges. The ALMA pro...
The ALMA telescope is one of the largest on-ground astronomical projects in the world. It has been p...
At NAOJ, we are studying and developing wide-band receiver optics components to be used in future AL...
In this paper we report the first results of the optical components development and the overall opti...
In this report a mm wave optics prototype for an Atacama Large Millimeter Array (ALMA) receiver cart...
\u3cp\u3eThe Atacama Large Millimeter/Sub-millimeter Array (ALMA) is currently the largest (sub-)mm ...
The ALMA telescope will be an interferometer of 64 antennas, which will be situated in the Atacama d...
The Atacama Large Millimeter Array (ALMA) is an interferometer consisting of 64 antennae of 12 m dia...
Abstract — The design of the receiver optics plays a crucial part in the ultimate sensitivity of the...
The Atacama large millimeter/submillimeter array (ALMA) is a radio telescope array with 50 Cassegrai...
Context. The Atacama Large Millimeter/submillimeter Array (ALMA) has been in operation since 2011, b...
ALMA Band 1 receiver covering 35-50 GHz is with the largest relative bandwidth among ten ALMA bands....
This paper describes the design and development of the ALMA Band 9 receiver cartridges. The ALMA pro...
The ALMA telescope is one of the largest on-ground astronomical projects in the world. It has been p...
At NAOJ, we are studying and developing wide-band receiver optics components to be used in future AL...
In this paper we report the first results of the optical components development and the overall opti...
In this report a mm wave optics prototype for an Atacama Large Millimeter Array (ALMA) receiver cart...
\u3cp\u3eThe Atacama Large Millimeter/Sub-millimeter Array (ALMA) is currently the largest (sub-)mm ...
The ALMA telescope will be an interferometer of 64 antennas, which will be situated in the Atacama d...
The Atacama Large Millimeter Array (ALMA) is an interferometer consisting of 64 antennae of 12 m dia...
Abstract — The design of the receiver optics plays a crucial part in the ultimate sensitivity of the...
The Atacama large millimeter/submillimeter array (ALMA) is a radio telescope array with 50 Cassegrai...
Context. The Atacama Large Millimeter/submillimeter Array (ALMA) has been in operation since 2011, b...
ALMA Band 1 receiver covering 35-50 GHz is with the largest relative bandwidth among ten ALMA bands....
This paper describes the design and development of the ALMA Band 9 receiver cartridges. The ALMA pro...