We are developing a novel bolometer which uses a fine mesh to absorb radiation. The filling factor of the mesh is small, providing a small heat capacity and a low geometric cross-section to cosmic rays. The mesh is patterned from a free-standing silicon nitride membrane and is thermally isolated by long radial legs of silicon nitride. A thin metallic film evaporated on the mesh absorbs radiation by matching the surface impedance to that of free space. A neutron transmutation doped germanium thermistor attached to the center of the mesh detects the temperature increase from absorbed radiation. The low thermal conductivity and heat capacity of silicon nitride provide improved performance in low background applications. We discuss the theoreti...
We present the design and performance of a feedhorn-coupled bolometer array intended for a sensitive...
We are developing arrays of feedhorn-coupled, silicon nitride micromesh (‘spider web’) bolometers fo...
International audienceCEA has a long history of customizing optoelectronic components for space and ...
We are developing a novel bolometer which uses a fine mesh to absorb radiation. The filling factor o...
We are developing a novel bolometer which uses a fine mesh to absorb radiation. The filling factor o...
We are developing a novel bolometer which uses a fine mesh to absorb radiation. The filling factor o...
We report the design and performance of 300-mK composite bolometers that use micromesh absorbers and...
We report the design and performance of 300-mK composite bolometers that use micromesh absorbers and...
We report the design and performance of 300-mK composite bolometers that use micromesh absorbers and...
We report the design and performance of 300-mK composite bolometers that use micromesh absorbers and...
We report the design and performance of 300-mK composite bolometers that use micromesh absorbers and...
We report the design and performance of 300-mK composite bolometers that use micromesh absorbers and...
We report the design and performance of 300-mK composite bolometers that use micromesh absorbers and...
We report the design and performance of 300-mK composite bolometers that use micromesh absorbers and...
We present the design and performance of a feedhorn-coupled bolometer array intended for a sensitive...
We present the design and performance of a feedhorn-coupled bolometer array intended for a sensitive...
We are developing arrays of feedhorn-coupled, silicon nitride micromesh (‘spider web’) bolometers fo...
International audienceCEA has a long history of customizing optoelectronic components for space and ...
We are developing a novel bolometer which uses a fine mesh to absorb radiation. The filling factor o...
We are developing a novel bolometer which uses a fine mesh to absorb radiation. The filling factor o...
We are developing a novel bolometer which uses a fine mesh to absorb radiation. The filling factor o...
We report the design and performance of 300-mK composite bolometers that use micromesh absorbers and...
We report the design and performance of 300-mK composite bolometers that use micromesh absorbers and...
We report the design and performance of 300-mK composite bolometers that use micromesh absorbers and...
We report the design and performance of 300-mK composite bolometers that use micromesh absorbers and...
We report the design and performance of 300-mK composite bolometers that use micromesh absorbers and...
We report the design and performance of 300-mK composite bolometers that use micromesh absorbers and...
We report the design and performance of 300-mK composite bolometers that use micromesh absorbers and...
We report the design and performance of 300-mK composite bolometers that use micromesh absorbers and...
We present the design and performance of a feedhorn-coupled bolometer array intended for a sensitive...
We present the design and performance of a feedhorn-coupled bolometer array intended for a sensitive...
We are developing arrays of feedhorn-coupled, silicon nitride micromesh (‘spider web’) bolometers fo...
International audienceCEA has a long history of customizing optoelectronic components for space and ...