Universal transport signatures in two-electron molecular quantum dots: gate-tunable Hund's rule, underscreened Kondo effect and quantum phase transitions
arXiv:1103.4849 · doi:10.1088/0953-8984/23/24/243202
Abstract
We review here some universal aspects of the physics of two-electron molecular transistors in the absence of strong spin-orbit effects. Several recent quantum dots experiments have shown that an electrostatic backgate could be used to control the energy dispersion of magnetic levels. We discuss how the generically asymmetric coupling of the metallic contacts to two different molecular orbitals can indeed lead to a gate-tunable Hund's rule in the presence of singlet and triplet states in the quantum dot. For gate voltages such that the singlet constitutes the (non-magnetic) ground state, one generally observes a suppression of low voltage transport, which can yet be restored in the form of enhanced cotunneling features at finite bias. More interestingly, when the gate voltage is controlled to obtain the triplet configuration, spin S=1 Kondo anomalies appear at zero-bias, with non-Fermi liquid features related to the underscreening of a spin larger than 1/2. Finally, the small bare singlet-triplet splitting in our device allows to fine-tune with the gate between these two magnetic configurations, leading to an unscreening quantum phase transition. This transition occurs between the non-magnetic singlet phase, where a two-stage Kondo effect occurs, and the triplet phase, where the partially compensated (underscreened) moment is akin to a magnetically "ordered" state. These observations are put theoretically into a consistent global picture by using new Numerical Renormalization Group simulations, taylored to capture sharp finie-voltage cotunneling features within the Coulomb diamonds, together with complementary out-of-equilibrium diagrammatic calculations on the two-orbital Anderson model. This work should shed further light on the complicated puzzle still raised by multi-orbital extensions of the classic Kondo problem.
Review article. 16 pages, 17 figures. Minor corrections and extra references added in V2
References in corpus (27)
- The numerical renormalization group method for quantum impurity systems
- Mechanical Control of Spin States in Spin-1 Molecules and the Underscreened Kondo Effect
- Orbital Kondo effect in carbon nanotubes
- Quantum phase transition in a single-molecule quantum dot
- Kondo effect in quantum dots
- On steady-state currents through nano-devices: a scattering-states numerical renormalization group approach to open quantum systems
- Electric-field controlled spin reversal in a quantum dot with ferromagnetic contacts
- Tuning the Kondo effect with a mechanically controllable break junction
- Hybrid superconductor-semiconductor devices made from self-assembled SiGe nanocrystals on silicon
- Nonequilibrium Singlet-Triplet Kondo Effect in Carbon Nanotubes
- Multi-impurity Anderson model for quantum dots coupled in parallel
- Noisy Kondo impurities
- Quantum criticality in a double quantum-dot system
- Properties of anisotropic magnetic impurities on surfaces
- Kondo physics in tunable semiconductor nanowire quantum dots
- Kondo screening in a magnetically frustrated nanostructure: Exact results on a stable, non-Fermi-liquid phase
- Transport spectroscopy of Kondo quantum dots coupled by RKKY interaction
- Quantum phase transitions in the systems of parallel quantum dots
- Correlated electron physics in multilevel quantum dots: phase transitions, transport, and experiment
- Singlet-triplet transition in a lateral quantum dot
- Two-stage Kondo effect in side-coupled quantum dots: Renormalized perturbative scaling theory and Numerical Renormalization Group analysis
- Quantum Transport Through a Stretched Spin--1 Molecule
- Optimal broadening of finite energy spectra in the numerical renormalization group: application to dissipative dynamics in two-level systems
- Spin-orbit interaction and asymmetry effects on Kondo ridges at finite magnetic field
- Out-of-equilibrium singlet-triplet Kondo effect in a single C_60 quantum dot
- Relevance of quantum fluctuations in the Anderson-Kondo model
- Kondo effects in a C_60 single-molecule transistor
Cited by in corpus (55)
- Advances and challenges in single-molecule electron transport
- Redox-Induced Gating of the Exchange Interactions in a Single Organic Diradical
- Current-induced switching in transport through anisotropic magnetic molecules
- Tunable Kondo physics in a carbon nanotube double quantum dot
- Interplay of Kondo effect and strong spin-orbit coupling in multi-hole ultraclean carbon nanotubes
- Nonequilibrium conductance of a nanodevice for small bias voltage
- Thermopower of an SU(4) Kondo resonance under an SU(2) symmetry-breaking field
- Transport mirages in single-molecule devices
- Nonequilibrium transport through magnetic vibrating molecules
- Heat current across a capacitively coupled double quantum dot for high magnetic field
- Interplay between quantum interference and Kondo effects in nonequilibrium transport through nanoscopic systems
- Orbital Kondo spectroscopy in a double quantum dot system
- Enhancing of nonlinear thermoelectric response of a correlated quantum dot in the Kondo regime by asymmetrically coupling to the leads
- Nonequilibrium self-energies, Ng approach and heat current of a nanodevice for small bias voltage and temperature
- Transport through side-coupled double quantum dots: from weak to strong interdot coupling
- Dissipative spin dynamics near a quantum critical point: Numerical Renormalization Group and Majorana diagrammatics
- Iron phthalocyanine on Au(111) is a "non-Landau" Fermi liquid
- Fully compensated Kondo effect for a two-channel spin S=1 impurity
- Underscreened Kondo effect in S=1 magnetic quantum dots: Exchange, anisotropy and temperature effects
- Nonequilibrium conductance through a benzene molecule in the Kondo regime
- Quantifying the leading role of the surface state in the Kondo effect of Co/Ag(111)
- Magnetic field effects in few-level quantum dots: theory, and application to experiment
- Impact of capacitance and tunneling asymmetries on Coulomb blockade edges and Kondo peaks in non-equilibrium transport through molecular quantum dots
- Two-channel Kondo physics in tunnel-coupled double quantum dots
- Restoring the SU(4) Kondo regime in a double quantum dot system
- Non-Fermi liquid behavior in transport through Co doped Au chains
- Relation between width of the zero-bias anomaly and Kondo temperaure in transport measurements through correlated quantum dots: Effect of asymmetric coupling to the leads
- Transport through side-coupled multilevel double quantum dots in the Kondo regime
- Replicas of the Kondo peak due to electron-vibration interaction in molecular transport properties
- Topological quantum phase transition between Fermi liquid phases in an Anderson impurity model
- Transport Signatures of Majorana Quantum Criticality Realized by Dissipative Resonant Tunneling
- Dynamical magnetic anisotropy and quantum phase transitions in a vibrating spin-1 molecular junction
- The crossover and spin filter properties of a double quantum dot nanosystem
- Temperature dependence of electronic transport through molecular magnets in the Kondo regime
- Low-energy physics for an iron phthalocyanine molecule on Au(111)
- Valence fluctuations in a lattice of magnetic molecules: application to iron(II) phtalocyanine molecules on Au(111)
- Topological quantum phase transition in individual Fe Atoms on MoS/Au(111)
- Two-stage three-channel Kondo physics for an FePc molecule on the Au(111) surface
- Scaling of conductance through quantum dots with magnetic field
- Width of the charge-transfer peak in the SU(N) impurity Anderson model and its relevance to non-equilibrium transport
- Kondo behavior and conductance through impurities in gold chains doped with oxygen
- Many-body quantum interference route to the two-channel Kondo effect: Inverse design for molecular junctions and quantum dot devices
- Destructive quantum interference in transport through molecules with electron-electron and electron-vibration interactions
- Thermoelectric properties of a double quantum dot out of equilibrium in Kondo and intermediate valence regimes
- Nonequilibrium Quantum Critical Steady State: Transport Through a Dissipative Resonant Level
- Renormalization-group analysis of a spin-1 Kondo dot: Non-equilibrium transport and relaxation dynamics
- Kondo temperature when the Fermi level is near a step in the conduction density of states
- Magnetotransport in the Kondo model with ferromagnetic exchange interaction
- Ferromagnetic and underscreened Kondo behavior in quantum dot arrays
- Ground state spin and excitation energies in half-filled Lieb lattices
- Kondo temperature of a quantum dot
- Role of asymmetry in thermoelectric properties of a double quantum dot out of equilibrium
- Transport in Single Quantum Dots: A Review from Linear Response to Nonlinear Regimes
- Hund and pair-hopping signature in transport properties of degenerate nanoscale devices
- Functional renormalization group approach to the singlet-triplet transition in quantum dots