Energy dissipation and transport in nanoscale devices
Рассеяние и перенос энергии в наноразмерных устройствах
2010-03-01
SCID: 54.1/mpbeh32d
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energy dissipationnanoscale devicessemiconductor nanowiresthermal rectificationthermal transport
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Abstract (AI)
Understanding energy dissipation and transport in nanoscale structures is of great importance for the design of energy-efficient circuits and energy-conversion systems. This is also a rich domain for fundamental discoveries at the intersection of electron, lattice (phonon), and optical (photon) interactions. This review presents recent progress in understanding and manipulation of energy dissipation and transport in nanoscale solid-state structures. First, the landscape of power usage from nanoscale transistors (∼10−8 W) to massive data centers (∼109 W) is surveyed. Then, focus is given to energy dissipation in nanoscale circuits, silicon transistors, carbon nanostructures, and semiconductor nanowires. Concepts of steady-state and transient thermal transport are also reviewed in the context of nanoscale devices with sub-nanosecond switching times. Finally, recent directions regarding energy transport are reviewed, including electrical and thermal conductivity of nanostructures, thermal rectification, and the role of ubiquitous material interfaces.
Key Findings
1
Energy dissipation and transport arise from coupled electron, phonon, and photon interactions, offering opportunities for energy-efficient circuits and energy-conversion systems.
2
Energy transport research includes nanostructure electrical and thermal conductivity, thermal rectification, and energy transfer across material interfaces.
3
Nanoscale power usage spans approximately 10−8 W in individual transistors to 10^9 W in massive data centers.
4
Steady-state and transient thermal transport are important for nanoscale devices operating with sub-nanosecond switching times.
5
The review surveys energy dissipation and transport across nanoscale circuits, silicon transistors, carbon nanostructures, and semiconductor nanowires.
Research Object
nanoscale solid-state structures and devices, including nanoscale circuits, silicon transistors, carbon nanostructures, and semiconductor nanowires
Research Subject
energy dissipation and transport, including steady-state and transient thermal transport, electrical and thermal conductivity, thermal rectification, and interface effects
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2010-03-01
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