نتایج جستجو برای: nanotube device

تعداد نتایج: 693540  

Journal: :Nature nanotechnology 2009
G A Steele G Gotz L P Kouwenhoven

Quantum dots defined in carbon nanotubes are a platform for both basic scientific studies and research into new device applications. In particular, they have unique properties that make them attractive for studying the coherent properties of single-electron spins. To perform such experiments it is necessary to confine a single electron in a quantum dot with highly tunable barriers, but disorder...

2014
Tae June Kang Taewoo Kim Eui Yun Jang Hyeongwook Im Xavier Lepro-Chavez Raquel Ovalle-Robles Jiyoung Oh Mikhail E. Kozlov Ray H. Baughman Hong H. Lee Yong Hyup Kim

Electromagnetic induction (EMI) is a mechanism of classical physics that can be utilized to convert mechanical energy to electrical energy or electrical to mechanical energy. This mechanism has not been exploited fully because of lack of a material with a sufficiently low force constant. We here show that carbon nanotube (CNT) aerogel sheets can exploit EMI to provide mechanical actuation at ve...

Journal: :Nature nanotechnology 2009
Adam W Tsen Luke A K Donev Huseyin Kurt Lihong H Herman Jiwoong Park

The one-dimensional structure of carbon nanotubes leads to a variety of remarkable optical and electrical properties that could be used to develop novel devices. Recently, the electrical conductance of nanotubes has been shown to decrease under optically induced heating by an amount proportional to the temperature change. Here, we show that this decrease is also proportional to the initial nano...

Journal: :Nano letters 2009
Slava V Rotkin Vasili Perebeinos Alexey G Petrov Phaedon Avouris

Excess heat generated in integrated circuits is one of the major problems of modern electronics. Surface phonon-polariton scattering is shown here to be the dominant mechanism for hot charge carrier energy dissipation in a nanotube device fabricated on a polar substrate, such as SiO(2). By use of microscopic quantum models, the Joule losses were calculated for the various energy dissipation cha...

2009

Carbon Nanotube FET technology is a new promising technology for high speed digital applications. This paper investigates optimizing Analog Circuits architecture to take advantage of this technology in mixed mode ICs and point at the optimum topology for CNFETs for the first time. It was found through simulations that the optimum topology for high-bandwidth analog circuits is obtained by using ...

2010
Xinning Ho Lina Ye Slava V. Rotkin Xu Xie Frank Du Simon Dunham Jana Zaumseil John A. Rogers

We present theoretical and experimental studies of Schottky diodes that use aligned arrays of single-walled carbon nanotubes. A simple physical model, taking into account the basic physics of current rectification, can adequately describe the single-tube and array devices. We show that for as-grown array diodes, the rectification ratio, defined by the maximum-to-minimum-current-ratio, is low du...

2005
M. Pourfath E. Ungersboeck A. Gehring B. H. Cheong W. J. Park H. Kosina S. Selberherr

Carbon nanotube field-effect transistors (CNTFETs) have been studied in recent years as a potential alternative to CMOS devices, because of the capability of ballistic transport. CNTFETs can be fabricated with Ohmic or Schottky type contacts. We focus here on Schottky barrier CNTFETs which operate by modulating the transmission coefficient of carriers through the Schottky barriers at the interf...

Journal: :Nature materials 2005
P R Bandaru C Daraio S Jin A M Rao

Carbon-nanotube-based electronics offers significant potential as a nanoscale alternative to silicon-based devices for molecular electronics technologies. Here, we show evidence for a dramatic electrical switching behaviour in a Y-junction carbon-nanotube morphology. We observe an abrupt modulation of the current from an on- to an off-state, presumably mediated by defects and the topology of th...

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