Charge sensed Pauli blockade in a metal-oxide-semiconductor lateral double quantum dot.
basic_science · Level V
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- Record sourced from PubMed, PMID 24199677.
- Also identified by DOI 10.1021/nl4020759.
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Abstract
We report Pauli blockade in a multielectron silicon metal-oxide-semiconductor double quantum dot with an integrated charge sensor. The current is rectified up to a blockade energy of 0.18 ± 0.03 meV. The blockade energy is analogous to singlet-triplet splitting in a two electron double quantum dot. Built-in imbalances of tunnel rates in the MOS DQD obfuscate some edges of the bias triangles. A method to extract the bias triangles is described, and a numeric rate-equation simulation is used to understand the effect of tunneling imbalances and finite temperature on charge stability (honeycomb) diagram, in particular the identification of missing and shifting edges. A bound on relaxation time of the triplet-like state is also obtained from this measurement.
Medical subject headings
- Metals
- Nanotechnology
- Oxides
- Quantum Dots