Staircase Quantum Dots Configuration in Nanowires for Optimized Thermoelectric Power
arXiv:1603.01063 · doi:10.1038/srep31974
Abstract
The performance of thermoelectric energy harvesters can be improved by nanostructures that exploit inelastic transport processes. One prototype is the three-terminal hopping thermoelectric device where electron hopping between quantum-dots are driven by hot phonons. Such three-terminal hopping thermoelectric devices have potential in achieving high efficiency or power via inelastic transport and without relying on heavy-elements or toxic compounds. We show in this work how output power of the device can be optimized via tuning the number and energy configuration of the quantum-dots embedded in parallel nanowires. We find that the staircase energy configuration with constant energy-step can improve the power factor over a serial connection of a single pair of quantum-dots. Moreover, for a fixed energy-step, there is an optimal length for the nanowire. Similarly for a fixed number of quantum-dots there is an optimal energy-step for the output power. Our results are important for future developments of high-performance nanostructured thermoelectric devices.
9 pages, 5 figures
References in corpus (5)
- Optimal energy quanta to current conversion
- Three-Terminal Energy Harvester with Coupled Quantum Dots
- Powerful and efficient energy harvester with resonant-tunneling quantum dots
- Enhancing efficiency and power of quantum-dots resonant tunneling thermoelectrics in three-terminal geometry by cooperative effects
- Linear and Nonlinear Mesoscopic Thermoelectric Transport with Coupling to Heat Baths
Cited by in corpus (11)
- Quantum-dot circuit-QED thermoelectric diodes and transistors
- Enhancing Thermoelectric Performance Using Nonlinear Transport Effects
- Spin-Seebeck effect and spin polarization in a multiple quantum dot molecule
- Near-field three-terminal thermoelectric heat engine
- Unconventional four-terminal thermoelectric transport due to inelastic transport: cooling by transverse current, transverse thermoelectric effect and Maxwell demon
- Inelastic thermoelectric transport and fluctuations in mesoscopic system
- Optimal efficiency and power and their trade-off in three-terminal quantum thermoelectric engines with two output electric currents
- Thermoelectric Cooperative Effect in Three-Terminal Elastic Transport through a Quantum Dot
- Coulomb thermoelectric drag in four-terminal mesoscopic quantum transport
- Rectifying the output of vibrational piezoelectric energy harvester using quantum dots
- Thermometry in dual quantum dot set-up with staircase ground state configuration