Reconfigurable Multivalue Logic Functions of a Silicon Ellipsoidal Quantum-Dot Transistor Operating at Room Temperature

  • Lee, Youngmin
  • Lee, Jin Woo
  • Lee, Sejoon
  • Hiramoto, Toshiro
  • Wang, Kang L.
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초록

Reconfigurable multivalue logic functions, which can perform the versatile arithmetic computation of weighted electronic data information, are demonstrated at room temperature on an all-around-gate silicon ellipsoidal quantum-dot transistor. The large single-hole transport energy of the silicon quantum ellipsoid allows the stable M-shaped Coulomb blockade oscillation characteristics at room temperature, and the all-around-gate structure of the fabricated transistor enables us to perform the precise self-control of the energetic Coulomb blockade conditions by changing the applied bias voltage. Such a self-controllability of the M-shaped Coulomb blockade oscillation characteristics provides a great advantage to choose multiple operation points for the reconfigurable multivalue logic functions. Consequently, the weighted data states (e.g., tri-value and quattro-value) are effectively demonstrated by utilizing only the device physics in the all-around-gate silicon ellipsoidal quantum-dot transistor. These findings are of great benefit for the practical application of the silicon quantum device at an elevated temperature for future nanoelectronic information technology.

키워드

siliconquantum dotsingle-electron tunnelingmultivalue logicroom-temperature operationTRANSPORT-PROPERTIESELECTRON-TRANSPORTTECHNOLOGYDEVICESTATES
제목
Reconfigurable Multivalue Logic Functions of a Silicon Ellipsoidal Quantum-Dot Transistor Operating at Room Temperature
저자
Lee, YoungminLee, Jin WooLee, SejoonHiramoto, ToshiroWang, Kang L.
DOI
10.1021/acsnano.1c08208
발행일
2021-11-23
유형
Article
저널명
ACS Nano
15
11
페이지
18483 ~ 18493