Fabrication and study of ultrathin MgB$_{2}$ films for hot electron bolometer applications
ORAL
Abstract
Hot electron bolometers (HEBs) based on superconducting thin films have already been demonstrated and successfully employed in the past. Magnesium diboride (MgB$_{2}$) has a potential to replace the currently used materials due to its higher critical temperature (39 K) and shorter intrinsic electron-phonon relaxation time. The high $T_{c}$ of MgB$_{2}$ could lead to advanced HEBs with higher operating temperatures, while the short relaxation time could help achieve a higher intermediate frequency bandwidth. In order to fabricate MgB$_{2}$ based HEBs, high-quality thin films with thicknesses of about 10 nm are required. We fabricated ultrathin MgB$_{2}$ films of 10 nm and less in our lab using the hybrid physical chemical vapor deposition (HPCVD) technique. The fabrication, characterization, and feasibility of these films for hot electron bolometer applications will be presented.
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Authors
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Matthaeus Wolak
Temple University
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Teng Tan
Department of Physics, Temple University, Temple University
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Daniel Cunnane
NASA Jet Propulsion Laboratory
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Boris Karasik
NASA Jet Propulsion Laboratory
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Xiaoxing Xi
Department of Physics, Temple University, Temple University, Department of Physics, Temple University, Philadelphia