This chapter is intended as a short introduction to electron flow in nanostructures. Its aim is to provide a brief overview of this topic for people who are interested in the thermodynamics of quantum systems, but know little about nanostructures. We particularly emphasize devices that work in the steady-state, such as simple thermoelectrics, but also mention cyclically driven heat engines. We do not aim to be either complete or rigorous, but use a few pages to outline some of the main ideas in the topic.\ua0\ua9 2018, Springer Nature Switzerland AG
A thesis submitted in partial fulfillment for the degree of Doctor of Philosophy in the Faculty of P...
Current heating is used to create a micron-scale hot electron reservoir in Semiconductor nanostructu...
This thesis investigates thermoelectric effects, predominantly in low-dimensional semiconductors. Va...
International audienceThis mini-review is intended as a short introduction to electron flow in nanos...
We focus on the theoretical approaches aimed to analyze thermoelectric properties at the nanoscale. ...
In recent years, the study of heat to work conversion has been re-invigorated by nanotechnology. Ste...
Tutor: Raúl Toral.The fulfillment of Moore’s law, the doubling of number of transistors in integrate...
| openaire: EC/H2020/742559/EU//SQHClassical and quantum electronic circuits provide ideal platforms...
Subject’s title: Quantum thermoelectricity and finite-frequency charge and heat current noises in na...
Device miniaturization allows for the improved speed and performance of modern-day computers compare...
Quantum Thermodynamics is a novel research field which explores the emergence of thermodynamics from...
We study quantum transport through two-terminal nanoscale devices in contact with two particle reser...
Thermodynamics is one of the main pillars of theoretical physics, and it has a special appeal of hav...
Offers an introduction to the physics of nanoelectronics, that encompasses spintronics, electronics,...
A thesis submitted in partial fulfillment for the degree of Doctor of Philosophy in the Faculty of P...
Current heating is used to create a micron-scale hot electron reservoir in Semiconductor nanostructu...
This thesis investigates thermoelectric effects, predominantly in low-dimensional semiconductors. Va...
International audienceThis mini-review is intended as a short introduction to electron flow in nanos...
We focus on the theoretical approaches aimed to analyze thermoelectric properties at the nanoscale. ...
In recent years, the study of heat to work conversion has been re-invigorated by nanotechnology. Ste...
Tutor: Raúl Toral.The fulfillment of Moore’s law, the doubling of number of transistors in integrate...
| openaire: EC/H2020/742559/EU//SQHClassical and quantum electronic circuits provide ideal platforms...
Subject’s title: Quantum thermoelectricity and finite-frequency charge and heat current noises in na...
Device miniaturization allows for the improved speed and performance of modern-day computers compare...
Quantum Thermodynamics is a novel research field which explores the emergence of thermodynamics from...
We study quantum transport through two-terminal nanoscale devices in contact with two particle reser...
Thermodynamics is one of the main pillars of theoretical physics, and it has a special appeal of hav...
Offers an introduction to the physics of nanoelectronics, that encompasses spintronics, electronics,...
A thesis submitted in partial fulfillment for the degree of Doctor of Philosophy in the Faculty of P...
Current heating is used to create a micron-scale hot electron reservoir in Semiconductor nanostructu...
This thesis investigates thermoelectric effects, predominantly in low-dimensional semiconductors. Va...