Quantum Coherence in an Exchange-Coupled Dimer of Single-Molecule Magnets
arXiv:cond-mat/0311209 · doi:10.1126/science.1090082
Abstract
A multi-high-frequency electron paramagnetic resonance method is used to probe the magnetic excitations of a dimer of single-molecule magnets. The measured spectra display well resolved quantum transitions involving coherent superposition states of both molecules. The behavior may be understood in terms of an isotropic superexchange coupling between pairs of single-molecule magnets, in analogy with several recently proposed quantum devices based on artificially fabricated quantum dots or clusters. These findings highlight the potential utility of supramolecular chemistry in the design of future quantum devices based on molecular nanomagnets.
References in corpus (2)
Cited by in corpus (59)
- Will spin-relaxation times in molecular magnets permit quantum information processing?
- Molecular engineering of antiferromagnetic rings for quantum computation
- Spin Chirality in a Molecular Dysprosium Triangle: the Archetype of the Non-Collinear Ising Model
- Spin-Based Quantum Computers made by Chemistry: Hows and Whys
- Direct Observation of Quantum Coherence in Single-Molecule Magnets
- Recipes for spin-based quantum computing
- Spin amplification, reading, and writing in transport through anisotropic magnetic molecules
- Magnetic Quantum Tunneling: Insights from Simple Molecule-Based Magnets
- Spin dynamics of molecular nanomagnets fully unraveled by four-dimensional inelastic neutron scattering
- Single-molecule Nanomagnets
- Quantum-gate implementation in permanently coupled AF spin rings without need of local fields
- Coherent Manipulation and Decoherence of S=10 Single-Molecule Magnets
- Neutron Scattering and Magnetic Observables for S = 1/2 Molecular Magnets
- Quantum Coherence between High Spin Superposition States of Single Molecule Magnet Ni
- A rotating cavity for high-field angle-dependent microwave spectroscopy of low-dimensional conductors and magnets
- Berry-phase blockade in single-molecule magnets
- Local Magnetic Properties of a Monolayer of Mn12 Single Molecule Magnets
- Landau-Zener tunneling in the presence of weak intermolecular interactions in a crystal of Mn4 single-molecule magnets
- Resonant photon absorption in the low spin molecule V15
- Coherent manipulation of electron spins up to ambient temperatures in Cr(S=1/2) doped KNbO
- Quantum spin coherence in halogen-modified CrNi molecular nanomagnets
- Intermolecular mechanism for multiple maxima in molecular dynamic susceptibility
- Spin Entanglement in supramolecular structures
- Direct observation of mixing of spin-multiplets in an antiferromagnetic molecular nanomagnet by electron paramagnetic resonance
- Macroscopic quantum tunneling and quantum-classical phase transitions of the escape rate in large spin systems
- Quantum dynamics of the Neel vector in the antiferromagnetic molecular wheel CsFe8
- Large spatial Schrodinger cat using a levitated ferrimagnetic nanoparticle
- On the anisotropy barrier reduction in fast relaxing Mn12 single-molecule magnets
- Origin of the fast magnetization tunneling in the single-molecule magnet [Ni(hmp)(tBuEtOH)Cl]4
- Fermionic concurrence in the extended Hubbard dimer
- Low temperature microwave emission from molecular clusters
- Magnetization and EPR studies of the single molecule magnet Ni with integrated sensors
- Magnetization induced dynamics of a Josephson junction coupled to a nanomagnet
- High frequency EPR on dilute solutions of the single molecule magnet Ni
- Determining the anisotropy and exchange parameters of polycrystalline spin-1 magnets
- Persistent Spin Dynamics in the V Molecular Nano-Magnet
- Quantum dynamics of exchange biased Single Molecule Magnets
- Magnetization relaxation in the single molecule magnet Ni under continuous microwave irradiation
- Pressure dependence of the exchange interaction in the dimeric single-molecule magnet [Mn4O3Cl4(O2CEt)3(py)3]2 from inelastic neutron scattering
- Spin Dynamics in Chains with Next-Nearest-Neighbor Exchange Interactions
- Anisotropy-Exchange Resonance as a Mechanism for Entangled State Switching
- Detection of entanglement between collective spins
- Correlation effects in the electronic structure of Mn molecular magnet
- Interference effect in the Landau-Zener tunneling of the antiferromagnetically coupled dimer of single-molecule magnets
- Phases of anisotropic dipolar antiferromagnets
- Two-qubit Quantum Logic Gate in Molecular Magnets
- Phase transition between quantum and classical regimes for the escape rate of dimeric molecular nanomagnets in a staggered magnetic field
- Modeling Magnetic Anisotropy of Single Chain Magnets in Regime
- Electronic control and switching of entangled spin state using anisotropy and exchange in the three-particle paradigm
- Memory and aging effects in interacting sub-10nm nanomagnets with large uniaxial anisotropy
- Quantum Forces in Molecular Magnets
- EPR spectrum via entangled states for an Exchange-Coupled Dimer of Single-Molecule Magnets
- NMR and SR detection of unconventional spin dynamics in Er(trensal) and Dy(trensal) molecular magnets
- Mapping Spin Interactions from Conductance Peak Splitting in Coulomb Blockade
- Rotating Entangled States of an Exchange-Coupled Dimer of Single-Molecule Magnets
- Stable two-dimensional ferromagnets made of regular single-layered lattices of single-molecule nanomagnets on substrates
- Quantum nanomagnets and nuclear spins: an overview
- Quantum Entanglement Generation in the Heterometallic NiGd Complexes
- Magnetoelectric effect in the mixed valence polyoxovanadate cage V