This paper investigates the electrical performance of innovative carbon-based nano-interconnects made by carbon nanotubes and graphene nanoribbons. The electronic transport in the carbon materials is modeled in the frame of the Transmission Line theory, where the classical per-unit-length circuital parameters are corrected by new terms arising from the quantistic nature of the transport. These parameters are related to the number of the conducting channels and the mean free path, which in turn, are expressed as functions of temperature and size. By coupling this model to the heat equation, a simple electro-thermal model is derived. Case-studies are carried out with reference to 22-nm technology node applications. Copyright ?????? 2013 John ...
We report a systematic investigation of the temperature dependence of electrical resistance behaviou...
We propose a nonequilibrium Green's function approach to calculate the ac conductance of variou...
As the interconnect delay exceeds the gate delay, the integrated circuit (IC) technology has evolved...
This paper investigates the electrical performance of innovative carbon-based nano-interconnects mad...
International audienceThis paper presents the electrothermal analysis of the performances of a Power...
The paper deals with the performance analysis of global-level on-chip interconnects. Two innovative ...
Azad Naeemi from the School of Electrical and Computer Engineering at the Georgia Institute of Techn...
This paper presents a circuit-based self-consistent electrothermal model of Power Delivery Networks ...
International audienceThis paper presents a circuit-based self-consistent electrothermal model of Po...
International audienceCarbon nanotubes (CNTs) present themselves as a viable material for on-and off...
Interconnect wires are major technology components of modern high-speed integrated circuits. To over...
peer reviewedInterconnect wires are major technology components of modern high-speed integrated circ...
As the physical limits of Moore’s law scaling are immediately apparent, industry has explored new wa...
We study the thermal transport in completely unzipped carbon nanotubes, which are called graphene na...
AbstractTo overcome disadvantages of nowadays microtechnology, a further miniaturization of electron...
We report a systematic investigation of the temperature dependence of electrical resistance behaviou...
We propose a nonequilibrium Green's function approach to calculate the ac conductance of variou...
As the interconnect delay exceeds the gate delay, the integrated circuit (IC) technology has evolved...
This paper investigates the electrical performance of innovative carbon-based nano-interconnects mad...
International audienceThis paper presents the electrothermal analysis of the performances of a Power...
The paper deals with the performance analysis of global-level on-chip interconnects. Two innovative ...
Azad Naeemi from the School of Electrical and Computer Engineering at the Georgia Institute of Techn...
This paper presents a circuit-based self-consistent electrothermal model of Power Delivery Networks ...
International audienceThis paper presents a circuit-based self-consistent electrothermal model of Po...
International audienceCarbon nanotubes (CNTs) present themselves as a viable material for on-and off...
Interconnect wires are major technology components of modern high-speed integrated circuits. To over...
peer reviewedInterconnect wires are major technology components of modern high-speed integrated circ...
As the physical limits of Moore’s law scaling are immediately apparent, industry has explored new wa...
We study the thermal transport in completely unzipped carbon nanotubes, which are called graphene na...
AbstractTo overcome disadvantages of nowadays microtechnology, a further miniaturization of electron...
We report a systematic investigation of the temperature dependence of electrical resistance behaviou...
We propose a nonequilibrium Green's function approach to calculate the ac conductance of variou...
As the interconnect delay exceeds the gate delay, the integrated circuit (IC) technology has evolved...