Now showing items 17608-17627 of 24540

    • Quantum Convolutional Neural Networks 

      Cong, Iris; Choi, Soonwon; Lukin, Mikhail (Springer Science and Business Media LLC, 2019-08-26)
      Neural network-based machine learning has recently proven successful for many complex applications ranging from image recognition to precision medicine. However, its direct application to problems in quantum physics is ...
    • Quantum Correlation in Disordered Spin Systems: Applications to Magnetic Sensing 

      Cappellaro, Paola; Lukin, Mikhail D. (American Physical Society, 2009)
      We propose a strategy to generate a many-body entangled state in a collection of randomly placed, dipolarly coupled electronic spins in the solid state. By using coherent control to restrict the evolution into a suitable ...
    • Quantum Critical Behaviour at the Many-Body Localization Transition 

      Rispoli, Matthew; Lukin, Alexander; Schittko, Robert; Kim, Sooshin; Tai, M. Eric; Greiner, Markus; Léonard, Julian (Springer Science and Business Media LLC, 2019-09)
      Phase transitions are driven by collective fluctuations of a system's constituents that emerge at a critical point. This mechanism has been extensively explored for classical and quantum systems in equilibrium, whose ...
    • Quantum critical dynamics of the two-dimensional Bose gas 

      Sachdev, Subir; Dunkel, Emily R. (American Physical Society, 2006)
      The dilute, two-dimensional Bose gas exhibits a novel regime of relaxational dynamics in the regime k(B)T greater than or similar to vertical bar mu vertical bar where T is the absolute temperature and mu is the chemical ...
    • Quantum Critical Point Shifts under Superconductivity: the Pnictides and the Cuprates 

      Moon, Eun; Sachdev, Subir (American Physical Society, 2010)
      We compare the position of an ordering transition in a metal to that in a superconductor. For the spin-density wave (SDW) transition, we find that the quantum critical point shifts by order \(\mid\Delta\mid\), where ...
    • Quantum Critical Response at the Onset of Spin Density Wave Order in Two-dimensional Metals 

      Hartnoll, Sean; Hofman, Diego; Metlitski, Max; Sachdev, Subir (American Physical Society, 2011)
      We study the frequency dependence of the electron self-energy and the optical conductivity in a recently developed field theory of the spin-density-wave quantum phase transition in two-dimensional metals. We focus on the ...
    • Quantum Critical States and Phase Transitions in the Presence of Non-Equilibrium Noise 

      Torre, Emanuele; Demler, Eugene A.; Giamarchi, Thierry; Altman, Ehud (Nature Publishing Group, 2010)
      Quantum critical points are characterized by scale invariant correlations and correspondingly long-ranged entanglement. As such, they present fascinating examples of quantum states of matter, the study of which has been ...
    • Quantum Critical Transport in Clean Graphene 

      Fritz, Lars; Schmalian, Jörg; Müller, Markus; Sachdev, Subir (American Physical Society, 2008)
      We describe electrical transport in ideal single-layer graphene at zero applied gate voltage. There is a crossover from collisionless transport at frequencies larger than \((k_{B}T/\hbar\) (\(T\) is the temperature) to ...
    • Quantum critical transport, duality, and M theory 

      Herzog, Christopher P.; Kovtun, Pavel; Sachdev, Subir; Son, Dam Thanh (American Physical Society, 2007)
      We consider charge transport properties of 2+1 dimensional conformal field theories at nonzero temperature. For theories with only Abelian U(1) charges, we describe the action of particle-vortex duality on the hydrodynam ...
    • Quantum Criticality 

      Sachdev, Subir; Keimer, Bernhard (American Institute of Physics, 2011)
      A phase transition brought on by quantum fluctuations at absolute zero may seem like an abstract theoretical idea of little practical consequence. But it is the key to explaining a wide variety of experiments.
    • Quantum Criticality and Black Holes 

      Sachdev, Subir; Müller, Markus (Institute of Physics, 2009)
      Many condensed matter experiments explore the finite temperature dynamics of systems near quantum critical points. Often, there are no well-defined quasiparticle excitations, and so quantum kinetic equations do not describe ...
    • Quantum Criticality and the Phase Diagram of the Cuprates 

      Sachdev, Subir (Elsevier, 2010)
      I discuss a proposed phase diagram of the cuprate superconductors as a function of temperature, carrier concentration, and a strong magnetic field perpendicular to the layers. I show how the phase diagram gives a unified ...
    • Quantum Criticality of a Fermi Gas with a Spherical Dispersion Minimum 

      Yang, Kun; Sachdev, Subir (American Physical Society, 2006)
    • Quantum criticality of reconstructing Fermi surfaces in antiferromagnetic metals 

      Lee, Junhyun; Strack, Philipp; Sachdev, Subir (American Physical Society, 2013)
    • Quantum Criticality of the Kagome Antiferromagnet with Dzyaloshinskii-Moriya Interactions 

      Huh, Yejin; Fritz, Lars; Sachdev, Subir (American Physical Society, 2010)
      We investigate the zero-temperature phase diagram of the nearest-neighbor kagome antiferromagnet in the presence of Dzyaloshinksii-Moriya interaction. We develop a theory for the transition between \(Z_2\) spin liquids ...
    • Quantum Criticality of U(1) Gauge Theories with Fermionic and Bosonic Matter in Two Spatial Dimensions 

      Kaul, Ribhu; Sachdev, Subir (American Physical Society, 2008)
      We consider relativistic \(U(1)\) gauge theories in \(2+1\) dimensions, with \(N_b\) species of complex bosons and \(N_f\) species of Dirac fermions at finite temperature. The quantum phase transition between the Higgs and ...
    • Quantum Degenerate Mixtures of Alkali and Alkaline-earth-like Atoms 

      Hara, Hideaki; Takasu, Yosuke; Yamaoka, Yoshifumi; Doyle, John M.; Takahashi, Yoshiro (American Physical Society, 2011)
      We realize simultaneous quantum degeneracy in mixtures consisting of the alkali and alkalineearth-like atoms Li and Yb. This is accomplished within an optical trap by sympathetic cooling of the fermionic isotope \(^6\)Li ...
    • Quantum Diamond Microscopes for Biological Systems and Integrated Circuits 

      Turner, Matthew James (2020-09-10)
      Nitrogen-Vacancy (NV) centers are atom-like point defects in diamond that have been utilized for applications in biological systems, integrated circuits, materials science, geoscience, positioning and navigation, quantum ...
    • Quantum Diffusion for the Anderson Model in the Scaling Limit 

      Erdos, Laszlo; Salmhofer, Manfred; Yau, Horng-Tzer (Springer Nature, 2007)
      We consider random Schrödinger equations on ℤdZd for d ≥ 3 with identically distributed random potential. Denote by λ the coupling constant and ψt the solution with initial data ψ0. The space and time variables scale as ...
    • Quantum diffusion of the random Schrödinger evolution in the scaling limit 

      Erdos, Laszlo; Salmhofer, Manfred; Yau, Horng-Tzer (International Press of Boston, 2008)
      We consider random Schrödinger equations on Rd for d ≽ 3 with a homogeneous Anderson–Poisson type random potential. Denote by λ the coupling constant and ψtψt the solution with initial data ψ0ψ0 . The space and time ...