Abstract Quantum-Dot Cellular Automata (QCA) technology uses quantum dots instead of transistors and diodes for performing the logical operation. Also, in logical circuits, many …
Throughout the world welfare systems have been experiencing a period of unprecedented change. Understanding these changes is difficult, not only because of their diversity, but also …
M Kianpour… - IEEE transactions on very …, 2015 - ieeexplore.ieee.org
Application of quantum-dot cellular automata (QCA) technology as an alternative to CMOS technology on the nanoscale has a promising future; QCA is an interesting technology for …
Nanotechnologies, notably quantum-dot cellular automata, have achieved world-wide attentions for their prominent features as compared to the conventional CMOS circuitry …
Y Lu, R Quardokus, CS Lent, F Justaud… - Journal of the …, 2010 - ACS Publications
{Cp*(dppe) Fe (C C−)} 2 (1, 3-C6H4) is studied both as a neutral molecule, Fe (II)− Fe (II), and as a mixed-valence complex, Fe (II)− Fe (III). Scanning tunneling microscopy (STM) is …
SRAM or Static Random-Access Memory is the most vital memory technology. SRAM is fast and robust but faces design challenges in nanoscale CMOS such as high leakage, power …
S Lee, Y Lee, EB Song, T Hiramoto - Nano letters, 2014 - ACS Publications
Single electron transport through multiple quantum levels is realized in a Si quantum-dot device at room-temperature conditions. The energy spacing of more than triple the …
The rapid advancement of Quantum-dot cellular automata (QCA) technology has moved on to the effective methods for testing these circuits due to its insufficient reliability. The growing …
Conventional digital circuits consume a considerable amount of energy. If bits of information remain during logical operations, power consumption decreases considerably because the …