Relaxation and Dephasing in a Two-electron 13C Nanotube Double Quantum Dot
arXiv:0811.3239 · doi:10.1103/PhysRevLett.102.166802
Abstract
We use charge sensing of Pauli blockade (including spin and isospin) in a two-electron 13C nanotube double quantum dot to measure relaxation and dephasing times. The relaxation time, T1, first decreases with parallel magnetic field then goes through a minimum in a field of 1.4 T. We attribute both results to the spin-orbit-modified electronic spectrum of carbon nanotubes, which suppresses hyperfine mediated relaxation and enhances relaxation due to soft phonons. The inhomogeneous dephasing time, T2*, is consistent with previous data on hyperfine coupling strength in 13C nanotubes.
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References in corpus (16)
- Spins in few-electron quantum dots
- Driven coherent oscillations of a single electron spin in a quantum dot
- Coupling of Spin and Orbital Motion of Electrons in Carbon Nanotubes
- Orbital Kondo effect in carbon nanotubes
- Relaxation, dephasing, and quantum control of electron spins in double quantum dots
- Double quantum dot with integrated charge sensor based on Ge/Si heterostructure nanowires
- Suppressing Spin Qubit Dephasing by Nuclear State Preparation
- Electrical control of spin relaxation in a quantum dot
- Spin-echo of a single electron spin in a quantum dot
- Spin-orbit interaction and anomalous spin relaxation in carbon nanotube quantum dots
- Measurement of Temporal Correlations of the Overhauser Field in a Double Quantum Dot
- Molecular states in carbon nanotube double quantum dots
- Excited state spectroscopy in carbon nanotube double quantum dots
- Pauli spin blockade in carbon nanotube double quantum dots
- Singlet-Triplet Physics and Shell Filling in Carbon Nanotube Double Quantum Dots
- Ion implanted Si:P double-dot with gate tuneable interdot coupling
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- Semiconductor Spin Qubits
- Demonstration of Entanglement of Electrostatically Coupled Singlet-Triplet Qubits
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- Large spin-orbit coupling in carbon nanotubes
- Nuclear Spins in Nanostructures
- Pauli Spin Blockade in the Presence of Strong Spin-Orbit Coupling
- Hyperfine interaction and electron-spin decoherence in graphene and carbon nanotube quantum dots
- Valley-spin blockade and spin resonance in carbon nanotubes
- Observation and Spectroscopy of a Two-Electron Wigner Molecule in an Ultra-Clean Carbon Nanotube
- Nuclear magnetism and electron order in interacting one-dimensional conductors
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- Nanomaterials for Quantum Information Science and Engineering
- Interface roughness, valley-orbit coupling and valley manipulation in quantum dots
- Spin-orbit-induced strong coupling of a single spin to a nanomechanical resonator
- Valley-based noise-resistant quantum computation using Si quantum dots
- Three-electron spin qubits
- Bends In Nanotubes Allow Electric Spin Control and Coupling
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- Magnetic field dependence of Pauli spin blockade: a window into the sources of spin relaxation in silicon quantum dots
- Hyperfine-induced valley mixing and the spin-valley blockade in carbon-based quantum dots
- Spin-valley blockade in carbon nanotube double quantum dots
- Stationary and transient leakage current in the Pauli spin blockade
- Room temperature manipulation of long lifetime spins in metallic-like carbon nanospheres
- Antiferromagnetic nuclear spin helix and topological superconductivity in C nanotubes
- Spectral properties of Luttinger liquids: A comparative analysis of regular, helical, and spiral Luttinger liquids
- Signatures of spin-orbit interaction in transport properties of finite carbon nanotubes in a parallel magnetic field
- Effective time-reversal symmetry breaking in the spin relaxation in a graphene quantum dot
- Few-electron physics in a nanotube quantum dot with spin-orbit coupling
- Coherent Phonons in Carbon Nanotubes and Graphene
- Spin-Orbit Effects in Carbon-Nanotube Double Quantum Dots
- Readout of carbon nanotube vibrations based on spin-phonon coupling
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- Inter-valley scattering induced by Coulomb interaction and disorder in carbon-nanotube quantum dots
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- Hyperfine and spin-orbit coupling effects on decay of spin-valley states in a carbon nanotube
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- Coherent electrical rotations of valley states in Si quantum dots using the phase of the valley-orbit coupling
- Tight-binding simulations of electrically driven spin-valley transitions in carbon nanotube quantum dots
- Spin-orbit coupling and spectral function of interacting electrons in carbon nanotubes
- Photon-assisted tunneling and charge dephasing in a carbon nanotube double quantum dot
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- Nanoscale magnetic resonance spectroscopy using a carbon nanotube double quantum dot
- Current hot spot in the spin-valley blockade in carbon nanotubes
- g-Tensor Control in Bent Carbon Nanotube Quantum Dots
- Temperature-dependent dynamical nuclear polarization bistabilities in double quantum dots in the spin-blockade regime
- Supercurrent and phase slips in a ballistic carbon nanotube embedded into a van der Waals heterostructure
- Para-ortho transition of artificial H molecule in lateral quantum dots doped with magnetic impurities
- Spin-orbit interaction in bent carbon nanotubes: resonant spin transitions
- Orbital hyperfine interaction and qubit dephasing in carbon nanotube quantum dots
- Nonmonotonic buildup of spin-singlet correlations in a double quantum dot
- Kondo Phase Transitions of Magnetic Impurities in Carbon Nanotubes
- Detection of charge states of an InAs nanowire triple quantum dot with an integrated nanowire charge sensor
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- Electronic structure of (1e,1h) states of carbon nanotube quantum dots
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