The Physics of Nanoelectronics: Transport and Fluctuation Phenomena at Low Temperatures

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Quantum interference effects 5. Introduction to superconductivity 6. Fluctuations and correlations 7. Single electron effects 8.

Quantum dots 9. Tunnel junctions with superconductors Graphene View via Publisher. Open Access. Publish Date: 26 November The Enduring Impact of Two Discoveries.

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Search Button Login Button. Search for:. Add Comments. Our research is directed in investigating these possibilities as well. Baenninger, A. Ghosh, M.

November 2015 - March 2016

Pepper, H. Beere, I. Farrer and D. Ritchie, Physical Review Letters , ;.

Кількість бібліографічних посилань на рік

Nowadays, nanostructures such as quantum dots a tiny puddle of charge and quantum wires appears when the puddle is pulled to form a one-dimensional line of charge can be created with nano-fabrication processes on band-engineered semiconductor heterostructures. These nanostructures are extremely interesting systems, where various intricate aspects of quantum mechanics, such as quantum entanglement, fractional excitations Tomonaga-Luttinger liquid etc.

Our work is directed toward detection and measurement of quantum entanglement in quantum dot nanostructures that form the very basis of quantum information processing. Goswami, C. Siegert, M.

The Physics of Nanoelectronics: Transport and Fluctuation Phenomena at Low Temperatures

Baenninger, M. Pepper, I. Farrer, D. Ritchie, and A.

Ghosh, Physical Review Letters , Siegert, Arindam Ghosh, M. Ritchie, D.


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Anderson and G. The exchange energy component of Coulomb interaction leads to a number fascinating effects involving the electron spin in nanostructures. The ferro.

Right A four-probe nanowire device, with electrical contacts made via a modified device fabrication route. Above: The normalised linear response resistance R as a function of temperature for four ultra-thin gold nanowire bunches with different number of wires is shown.

Quantized thermal transport in single-atom junctions

We have investigated the electrical transport on molecular scale single crystalline wires of gold, with diameter of about 2nm see above , which forms the thinnest freestanding noble metal wire ever measured.