Coupling of Spin and Orbital Motion of Electrons in Carbon Nanotubes
arXiv:0802.1351 · doi:10.1038/nature06822
Abstract
Electrons in atoms possess both spin and orbital degrees of freedom. In non-relativistic quantum mechanics, these are independent, resulting in large degeneracies in atomic spectra. However, relativistic effects couple the spin and orbital motion leading to the well-known fine structure in their spectra. The electronic states in defect-free carbon nanotubes (NTs) are widely believed to be four-fold degenerate, due to independent spin and orbital symmetries, and to also possess electron-hole symmetry. Here we report measurements demonstrating that in clean NTs the spin and orbital motion of electrons are coupled, thereby breaking all of these symmetries. This spin-orbit coupling is directly observed as a splitting of the four-fold degeneracy of a single electron in ultra-clean quantum dots. The coupling favours parallel alignment of the orbital and spin magnetic moments for electrons and anti-parallel alignment for holes. Our measurements are consistent with recent theories that predict the existence of spin-orbit coupling in curved graphene and describe it as a spin-dependent topological phase in NTs. Our findings have important implications for spin-based applications in carbon-based systems, entailing new design principles for the realization of qubits in NTs and providing a mechanism for all-electrical control of spins in NTs.
14 pages, 6 figures
References in corpus (10)
- Single-shot read-out of an individual electron spin in a quantum dot
- Spin qubits in graphene quantum dots
- Coherent control of a single electron spin with electric fields
- Spin-orbit coupling in curved graphene, fullerenes, nanotubes, and nanotube caps
- Orbital Kondo effect in carbon nanotubes
- Spin-orbit interaction and anomalous spin relaxation in carbon nanotube quantum dots
- Four-electron shell structures and an interacting two-electron system in carbon nanotube quantum dots
- SU(4) and SU(2) Kondo Effects in Carbon Nanotube Quantum Dots
- Electronic Transport Spectroscopy of Carbon Nanotubes in a Magnetic Field
- Electronic excitation spectrum of metallic carbon nanotubes
Cited by in corpus (95)
- Semiconductor Spin Qubits
- Colloquium: Graphene spectroscopy
- Large spin-orbit coupling in carbon nanotubes
- Spin-orbit interaction and anomalous spin relaxation in carbon nanotube quantum dots
- Tunable few-electron double quantum dots and Klein tunnelling in ultra-clean carbon nanotubes
- Hyperfine interaction and electron-spin decoherence in graphene and carbon nanotube quantum dots
- Valley-spin blockade and spin resonance in carbon nanotubes
- Nanomaterials for Quantum Information Science and Engineering
- Excited states in bilayer graphene quantum dots
- Bends In Nanotubes Allow Electric Spin Control and Coupling
- RKKY interaction in carbon nanotubes and graphene nanoribbons
- Pumping of vibrational excitations in a Coulomb blockaded suspended carbon nanotube
- Kondo effect and spin-orbit coupling in graphene quantum dots
- Collective decoherence of cold atoms coupled to a Bose-Einstein condensate
- Spin-valley coupling in single-electron bilayer graphene quantum dots
- Electronic properties of the armchair graphene nanoribbon
- Helical States in Curved Bilayer Graphene
- Spin and energy currents in integrable and nonintegrable spin-1/2 chains: A typicality approach to real-time autocorrelations
- All-Optical Manipulation of Electron Spins in Carbon-Nanotube Quantum Dots
- Ground-state cooling of a carbon nanomechanical resonator by spin-polarized current
- Spin-orbit interaction in chiral carbon nanotubes probed in pulsed magnetic fields
- Spin selectivity through time-reversal symmetric helical junctions
- Clean carbon nanotubes coupled to superconducting impedance-matching circuits
- Coulomb versus spin-orbit interaction in few-electron carbon-nanotube quantum dots
- Kondo effect in carbon nanotube quantum dots with spin-orbit coupling
- Josephson current through interacting double quantum dots with spin-orbit coupling
- Pauli spin blockade in carbon nanotube double quantum dots
- A three-junction SQUID-on-tip with tunable in-plane and out-of-plane magnetic field sensitivity
- Emerging Dirac and Majorana fermions for carbon nanotubes with proximity-induced pairing and spiral magnetic field
- Spinorial formulation of the GW-BSE equations and spin properties of excitons in 2D Transition Metal Dichalcogenides
- Electron spin resonance signal of Luttinger liquids and single-wall carbon nanotubes
- Few-electron physics in a nanotube quantum dot with spin-orbit coupling
- Spin polarized current and shot noise in carbon nanotube quantum dot in the Kondo regime
- Semiconductor quantum ring as a solid-state spin qubit
- Inelastic scattering and heating in a molecular spin pump
- Magnetic damping of a carbon nanotube NEMS resonator
- Magnetic-Field Dependence of Tunnel Couplings in Carbon Nanotube Quantum Dots
- Spin-selective transmission through a single-stranded magnetic helix
- Spin filtering in all-electrical three-terminal interferometers
- Spin-polarized currents through interacting quantum wires with nonmagnetic leads
- Coulomb oscillations in three-layer graphene nanostructures
- Microwave spectroscopy of a carbon nanotube charge qubit
- Spin-Valley Protected Kramers Pair in Bilayer Graphene
- Valley coupling in finite-length metallic single-wall carbon nanotubes
- Transport across a carbon nanotube quantum dot contacted with ferromagnetic leads: experiment and non-perturbative modeling
- Quantized Charge Pumping through a Carbon Nanotube Double Quantum Dot
- Wigner crystal phases in confined carbon nanotubes
- Topology and zero energy edge states in carbon nanotubes with superconducting pairing
- Probing individual split Cooper-pairs using the spin qubit toolkit
- Spin-orbit coupling and spectral function of interacting electrons in carbon nanotubes
- Control of vibrational states by spin-polarized transport in a carbon nanotube resonator
- Real Time Electron Tunneling and Pulse Spectroscopy in Carbon Nanotube Quantum Dots
- Dynamics of coupled spins in quantum dots with strong spin-orbit interaction
- Carbon nanotube quantum dots on hexagonal boron nitride
- Microwave spectroscopy of a Cooper pair beam splitter
- Direct observation of band-gap closure for a semiconducting carbon nanotube in a large parallel magnetic field
- Spin-orbit effects in armchair carbon nanotubes: analytical results
- Electrically driven spin resonance in a bent disordered carbon nanotube
- Switchable Coupling of Vibrations to Two-Electron Carbon-Nanotube Quantum Dot States
- Spin-dependent electronic hybridization in a rope of carbon nanotubes
- Probing coherent Cooper pair splitting with cavity photons
- Shape-sensitive Pauli blockade in a bent carbon nanotube
- Intrinsic spin Hall effect in graphene: Numerical calculations in a multi-orbital mode
- Anomalous magnetization of a carbon nanotube as an excitonic insulator
- Spin and Orbital Splitting in Ferromagnetic Contacted Single Wall Carbon Nanotube Devices
- Coulomb-blockade and Pauli-blockade magnetometry
- Topologically nontrivial and trivial zero modes in chiral molecules
- Compensation effect in carbon nanotube quantum dots coupled to polarized electrodes in the presence of spin-orbit coupling
- Effects of different lead magnetizations on the Datta-Das spin field-effect transistor
- Linear conductance of an interacting carbon nanotube ring
- Orbital hyperfine interaction and qubit dephasing in carbon nanotube quantum dots
- Spin-polarized transport in helical membranes due to spin-orbit coupling
- Spin and angular resolved photoemission experiments on epitaxial graphene
- Exciton Quasi-Condensation in One Dimensional Systems
- Two-electron n-p double quantum dots in carbon nanotubes
- Josephson junctions based on ultraclean carbon nanotubes
- Nuclear-induced dephasing and signatures of hyperfine effects in isotopically purified C graphene
- Superconductivity in correlated carbon nanotubes under pressure: A Bogoliubov-de Gennes study
- Chirality-induced selectivity of angular momentum by orbital Edelstein effect in carbon nanotubes
- Quantum Transport Straintronics and Mechanical Aharonov-Bohm Effect in Quasi-metallic SWCNTs
- Creating arbitrary quantum vibrational states in a carbon nanotube
- Tuning Gap in Corrugated Graphene with Spin Dependence
- Spin orbit interaction in nanotubes
- Single Spin Detection with a Carbon Nanotube Double Quantum Dot
- Orbital Fulde-Ferrell-Larkin-Ovchinnikov state in 2H-NbS2 flakes
- Spin-polarized dynamic transport in tubular two-dimensional electron gases
- Resonator induced quantum phase transitions in a hybrid Josephson junction
- Impact of Kondo correlations and spin-orbit coupling on spin-polarized transport in carbon nanotube quantum dot
- Nagaoka spin-valley ordering in silicene quantum dots
- Thermoelectric unipolar spin battery in a suspended carbon nanotube
- Curvature-induced valley-dependent spin-orbit interaction
- Correlated insulating states in carbon nanotubes controlled by magnetic field
- Tunneling in rippled graphene superlattice with spin dependence and a mass term
- Spin caloritronics in collinear ferromagnetic helical structures under irradiation
- Gate-dependent spin-orbit coupling in multi-electron carbon nanotubes