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Tunneling statistics for analysis of spin-readout fidelity
by
House, Matthew G
, Hile, Samuel J
, Simmons, Michelle Y
, Keizer, Joris G
, Fricke, Lukas
, Gorman, Samuel K
, Broome, Matthew A
, He, Yu
, Keith, Daniel
in
Bunching
/ Electron spin
/ Electrons
/ Magnetic fields
/ Quantum dots
/ Single-electron transistors
/ Spin dynamics
/ Statistics
2017
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Tunneling statistics for analysis of spin-readout fidelity
by
House, Matthew G
, Hile, Samuel J
, Simmons, Michelle Y
, Keizer, Joris G
, Fricke, Lukas
, Gorman, Samuel K
, Broome, Matthew A
, He, Yu
, Keith, Daniel
in
Bunching
/ Electron spin
/ Electrons
/ Magnetic fields
/ Quantum dots
/ Single-electron transistors
/ Spin dynamics
/ Statistics
2017
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Do you wish to request the book?
Tunneling statistics for analysis of spin-readout fidelity
by
House, Matthew G
, Hile, Samuel J
, Simmons, Michelle Y
, Keizer, Joris G
, Fricke, Lukas
, Gorman, Samuel K
, Broome, Matthew A
, He, Yu
, Keith, Daniel
in
Bunching
/ Electron spin
/ Electrons
/ Magnetic fields
/ Quantum dots
/ Single-electron transistors
/ Spin dynamics
/ Statistics
2017
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Tunneling statistics for analysis of spin-readout fidelity
Paper
Tunneling statistics for analysis of spin-readout fidelity
2017
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Overview
We investigate spin and charge dynamics of a quantum dot of phosphorus atoms coupled to a radio-frequency single-electron transistor (rf-SET) using full counting statistics. We show how the magnetic field plays a role in determining the bunching or anti-bunching tunnelling statistics of the donor dot and SET system. Using the counting statistics we show how to determine the lowest magnetic field where spin-readout is possible. We then show how such a measurement can be used to investigate and optimise single electron spin-readout fidelity.
Publisher
Cornell University Library, arXiv.org
Subject
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