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1.
Nat Mater ; 17(4): 313-317, 2018 04.
Artigo em Inglês | MEDLINE | ID: mdl-29434307

RESUMO

Longitudinal relaxation is the process by which an excited spin ensemble decays into its thermal equilibrium with the environment. In solid-state spin systems, relaxation into the phonon bath usually dominates over the coupling to the electromagnetic vacuum1-9. In the quantum limit, the spin lifetime is determined by phononic vacuum fluctuations 10 . However, this limit was not observed in previous studies due to thermal phonon contributions11-13 or phonon-bottleneck processes10, 14,15. Here we use a dispersive detection scheme16,17 based on cavity quantum electrodynamics18-21 to observe this quantum limit of spin relaxation of the negatively charged nitrogen vacancy (NV-) centre 22 in diamond. Diamond possesses high thermal conductivity even at low temperatures 23 , which eliminates phonon-bottleneck processes. We observe exceptionally long longitudinal relaxation times T1 of up to 8 h. To understand the fundamental mechanism of spin-phonon coupling in this system we develop a theoretical model and calculate the relaxation time ab initio. The calculations confirm that the low phononic density of states at the NV- transition frequency enables the spin polarization to survive over macroscopic timescales.

2.
Nature ; 555(7698): 599-603, 2018 03 29.
Artigo em Inglês | MEDLINE | ID: mdl-29443961

RESUMO

Electron spins in silicon quantum dots are attractive systems for quantum computing owing to their long coherence times and the promise of rapid scaling of the number of dots in a system using semiconductor fabrication techniques. Although nearest-neighbour exchange coupling of two spins has been demonstrated, the interaction of spins via microwave-frequency photons could enable long-distance spin-spin coupling and connections between arbitrary pairs of qubits ('all-to-all' connectivity) in a spin-based quantum processor. Realizing coherent spin-photon coupling is challenging because of the small magnetic-dipole moment of a single spin, which limits magnetic-dipole coupling rates to less than 1 kilohertz. Here we demonstrate strong coupling between a single spin in silicon and a single microwave-frequency photon, with spin-photon coupling rates of more than 10 megahertz. The mechanism that enables the coherent spin-photon interactions is based on spin-charge hybridization in the presence of a magnetic-field gradient. In addition to spin-photon coupling, we demonstrate coherent control and dispersive readout of a single spin. These results open up a direct path to entangling single spins using microwave-frequency photons.

3.
Phys Rev Lett ; 118(14): 140502, 2017 Apr 07.
Artigo em Inglês | MEDLINE | ID: mdl-28430485

RESUMO

We report coherent coupling between two macroscopically separated nitrogen-vacancy electron spin ensembles in a cavity quantum electrodynamics system. The coherent interaction between the distant ensembles is directly detected in the cavity transmission spectrum by observing bright and dark collective multiensemble states and an increase of the coupling strength to the cavity mode. Additionally, in the dispersive limit we show transverse ensemble-ensemble coupling via virtual photons.

4.
Phys Rev Lett ; 117(15): 157202, 2016 Oct 07.
Artigo em Inglês | MEDLINE | ID: mdl-27768325

RESUMO

We report the observation of the anisotropic polar magneto-optical Kerr effect in thin layers of epitaxial Fe/GaAs(001) at room temperature. A clear twofold symmetry of the Kerr rotation angle depending on the orientation of the linear polarization of the probing laser beam with respect to the crystallographic directions of the sample is detected for ultrathin magnetic films saturated out of the film plane. The amplitude of the anisotropy decreases with increasing Fe film thickness, suggesting that the interfacial region is the origin of the anisotropy. The twofold symmetry is fully reproduced by model calculations based on an interference of interfacial Bychkov-Rashba and Dresselhaus spin-orbit coupling.

5.
Phys Rev Lett ; 113(2): 023603, 2014 Jul 11.
Artigo em Inglês | MEDLINE | ID: mdl-25062180

RESUMO

Generalized Dicke models can be implemented in hybrid quantum systems built from ensembles of nitrogen-vacancy (NV) centers in diamond coupled to superconducting microwave cavities. By engineering cavity assisted Raman transitions between two spin states of the NV defect, a fully tunable model for collective light-matter interactions in the ultrastrong coupling limit can be obtained. Our analysis of the resulting nonequilibrium phases for a single cavity and for coupled cavity arrays shows that different superradiant phase transitions can be observed using existing experimental technologies, even in the presence of large inhomogeneous broadening of the spin ensemble. The phase diagram of the Dicke lattice model displays distinct features induced by dissipation, which can serve as a genuine experimental signature for phase transitions in driven open quantum systems.

6.
Acta Biomater ; 10(1): 384-93, 2014 Jan.
Artigo em Inglês | MEDLINE | ID: mdl-23994269

RESUMO

Joint replacements have a longer durability in patients with high serum levels of adiponectin (APN) than in patients with low levels. We aimed to characterize the unknown pathophysiological effects of APN on wear particle-induced inflammation, apoptosis and osteolysis. Immunohistochemistry was performed to detect APN, its receptors and apoptosis in patients with and without aseptic loosening. Additionally, APN knockout mouse studies and pharmacological intervention of APN were performed in an established calvarial mouse model. Osteolysis and inflammation were quantified by histomorphometry and microcomputed tomography, apoptosis by immunohistochemistry and TUNEL assay. In a cell culture model, human monocyte-derived macrophages were incubated with or without metal wear debris particles and partially treated with APN. Expression of APN, AdipoR1 and calreticulin in specimens from patients with aseptic loosening were significantly higher than in patients without aseptic loosening. Administration of APN in mice significantly reduced wear particle-induced inflammation, osteolysis and the number of caspase-3-positive macrophages. The cell culture model showed that APN leads to significantly lower values of TNF-α. These findings support a prominent role of APN in the development of particle-induced osteolysis and APN may be therapeutically useful in patients with aseptic loosening.


Assuntos
Adiponectina/metabolismo , Artroplastia de Quadril/efeitos adversos , Osteólise/etiologia , Osteólise/metabolismo , Falha de Prótese/etiologia , Adulto , Idoso , Idoso de 80 Anos ou mais , Animais , Apoptose , Células Cultivadas , Modelos Animais de Doenças , Feminino , Humanos , Marcação In Situ das Extremidades Cortadas , Inflamação/patologia , Cápsula Articular/metabolismo , Cápsula Articular/patologia , Macrófagos/metabolismo , Macrófagos/patologia , Masculino , Camundongos Endogâmicos C57BL , Pessoa de Meia-Idade , Modelos Biológicos , Fagocitose , Receptores de Adiponectina/metabolismo , Crânio/metabolismo , Crânio/patologia
7.
Neuroscience ; 261: 133-43, 2014 Mar 07.
Artigo em Inglês | MEDLINE | ID: mdl-24211303

RESUMO

The postsynaptic density is an electron dense meshwork composed of a variety of molecules facilitating neuronal signal transmission. ProSAP2/Shank3 represents a crucial player at postsynaptic sites, assembling large multimeric platforms and anchoring numerous other molecules, thereby linking the functional synapse with the cytoskeleton. ProSAP2/Shank3 is also implicated in the pathogenesis of numerous diseases, including autism spectrum disorders. KvBeta2 (Kvß2) on the other hand serves as a regulatory subunit of voltage-gated potassium channels. Kvß2 is located at various sites in the neuron including the axon (binding to Kv1.2), the dendrites (binding to Kv4.2) and the synapse. Binding of Kvß2 to either Kv1.2 or Kv4 modulates not only the channel conformation but directs targeting of the channel protein complex to distinct loci within the cell. Thus an interaction between ProSAP2 and Kvß2 could have important roles at diverse cellular compartments and moreover during maturation stages. We report here on the direct protein-protein interaction of the postsynaptic density anchoring molecule ProSAP2 and the potassium channel subunit Kvß2, initially identified in a yeast-two-hybrid-screen. Furthermore, we characterize this interaction at synapses using primary hippocampal neurons in vitro.


Assuntos
Proteínas do Tecido Nervoso/metabolismo , Neurônios/metabolismo , Densidade Pós-Sináptica/metabolismo , Canais de Potássio de Abertura Dependente da Tensão da Membrana/metabolismo , Superfamília Shaker de Canais de Potássio/metabolismo , Animais , Western Blotting , Células COS , Células Cultivadas , Chlorocebus aethiops , Hipocampo/crescimento & desenvolvimento , Hipocampo/metabolismo , Imuno-Histoquímica , Hibridização In Situ , Camundongos , Microscopia Imunoeletrônica , Modelos Biológicos , Proteínas do Tecido Nervoso/genética , Domínios PDZ , Canais de Potássio de Abertura Dependente da Tensão da Membrana/genética , Ratos , Ratos Sprague-Dawley , Superfamília Shaker de Canais de Potássio/genética , Transfecção , Técnicas do Sistema de Duplo-Híbrido
8.
Phys Rev Lett ; 107(6): 060502, 2011 Aug 05.
Artigo em Inglês | MEDLINE | ID: mdl-21902306

RESUMO

We report strong coupling between an ensemble of nitrogen-vacancy center electron spins in diamond and a superconducting microwave coplanar waveguide resonator. The characteristic scaling of the collective coupling strength with the square root of the number of emitters is observed directly. Additionally, we measure hyperfine coupling to (13)C nuclear spins, which is a first step towards a nuclear ensemble quantum memory. Using the dispersive shift of the cavity resonance frequency, we measure the relaxation time of the NV center at millikelvin temperatures in a nondestructive way.

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