Electron aspirator using electron–electron scattering in nanoscale silicon

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作者
Himma Firdaus
Tokinobu Watanabe
Masahiro Hori
Daniel Moraru
Yasuo Takahashi
Akira Fujiwara
Yukinori Ono
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[1] Shizuoka University,Graduate School of Science and Technology
[2] Shizuoka University,Research Institute of Electronics
[3] Hokkaido University,Graduate School of Information Science and Technology
[4] NTT Basic Research Laboratories,undefined
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Current enhancement without increasing the input power is a critical issue to be pursued for electronic circuits. However, drivability of metal-oxide-semiconductor (MOS) transistors is limited by the source-injection current, and electrons that have passed through the source unavoidably waste their momentum to the phonon bath. Here, we propose the Si electron-aspirator, a nanometer-scaled MOS device with a T-shaped branch, to go beyond this limit. The device utilizes the hydrodynamic nature of electrons due to the electron–electron scattering, by which the injected hot electrons transfer their momentum to cold electrons before they relax with the phonon bath. This momentum transfer induces an electron flow from the grounded side terminal without additional power sources. The operation is demonstrated by observing the output-current enhancement by a factor of about 3 at 8 K, which reveals that the electron–electron scattering can govern the electron transport in nanometer-scaled MOS devices, and increase their effective drivability.
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