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Charge Relaxation and Dephasing in Coulomb Coupled Conductors
Charge Relaxation and Dephasing in Coulomb Coupled Conductors

Photon pairs with coherence time exceeding 1 μs
Photon pairs with coherence time exceeding 1 μs

Critical and oÿ-critical singularities in disordered quantum magnets H. Rieger
Critical and oÿ-critical singularities in disordered quantum magnets H. Rieger

Can gas hydrate structures be described using - e-Spacio
Can gas hydrate structures be described using - e-Spacio

... the same model, one could compare classical simulations for a good classical model with quantum simulations for a good quantum model. A good classical model is one in which the parameters were fitted to experimental properties within classical simulations, so that, in some implicit way, quantum cont ...
Silicon nanophotonics for scalable quantum coherent feedback
Silicon nanophotonics for scalable quantum coherent feedback

Full text in PDF form
Full text in PDF form

Nicolas Gisin - Quantum Nonlocality
Nicolas Gisin - Quantum Nonlocality

... Spatially separated systems are not logically separated. ...
Phys. Rev. Lett. 107, 250501 - APS Link Manager
Phys. Rev. Lett. 107, 250501 - APS Link Manager

Chemical reaction rates using the semiclassical
Chemical reaction rates using the semiclassical

Optical gain in silicon nanocrystals
Optical gain in silicon nanocrystals

... of the ®tted straight line with the vertical axis gives the lifetime of the Si nanocrystals in the system at the measured wavelength. The obtained value (70 ms) is in agreement with decay time measurements at 850 nm on the same sample. In this way we have been able to obtain a direct measurement of ...
An  information-theoretic perspective on  the foundations  of
An information-theoretic perspective on the foundations of

Renormalization Group Flows for Quantum Gravity
Renormalization Group Flows for Quantum Gravity

Quantum Optics VII Conference Program
Quantum Optics VII Conference Program

... In this talk, the basic tool box of the Innsbruck quantum information processor based on a string of trapped Ca+ ions will be reviewed. For quantum information science, the toolbox operations are used to encode one logical qubit in entangled states distributed over seven trapped-ion qubits. We demon ...
Thermal and Quantum Phase Transitions
Thermal and Quantum Phase Transitions

Nature template - PC Word 97
Nature template - PC Word 97

Locally critical quantum phase transitions in strongly
Locally critical quantum phase transitions in strongly

... When a metal undergoes a continuous quantum phase transition, non-Fermi-liquid behaviour arises near the critical point. All the low-energy degrees of freedom induced by quantum criticality are usually assumed to be spatially extended, corresponding to long-wavelength ¯uctuations of the order parame ...
Loop Quantum Gravity in a Nutshell
Loop Quantum Gravity in a Nutshell

Security of Quantum Bit String Commitment Depends on the
Security of Quantum Bit String Commitment Depends on the

The strange (hi)story of particles and waves
The strange (hi)story of particles and waves

Quantum electrical transport in samples of limited
Quantum electrical transport in samples of limited

... 2~a! is an example of the relevant observations published in 1988 by two groups, one at the Phillips Research Laboratories2 and one at the Cavendish Laboratory in Cambridge.3 In these measurements, there is no magnetic field applied. Figure 2~b! sketches the experimental arrangement needed to genera ...
COMPUTING QUANTUM PHASE TRANSITIONS PREAMBLE
COMPUTING QUANTUM PHASE TRANSITIONS PREAMBLE

Models of quantum computation and quantum programming
Models of quantum computation and quantum programming

Czech Technical University in Prague Faculty of Electrical
Czech Technical University in Prague Faculty of Electrical

... Recently, the field of unconventional computing has witnessed a huge research effort to solve the problem of the assumed power of computers operating purely according to the laws of quantum physics. Quantum computing can be seen as a special intermediate case between digital and real analog computin ...
Embedding Quantum Simulators Roberto Di Candia
Embedding Quantum Simulators Roberto Di Candia

An Introduction to Quantum Cosmology
An Introduction to Quantum Cosmology

... The concept of a quantum wave function of the universe may initially seem a paradox. One tends to think of quantum systems as ‘small’ systems, such as the atom. However, if the force(s) that govern the universe are fundamentally quantum mechanical then the universe must be a quantum mechanical syst ...
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Quantum machine learning

Quantum machine learning is a newly emerging interdisciplinary research area between quantum physics and computer science that summarises efforts to combine quantum mechanics with methods of machine learning. Quantum machine learning models or algorithms intend to use the advantages of quantum information in order to improve classical methods of machine learning, for example by developing efficient implementations of expensive classical algorithms on a quantum computer. However, quantum machine learning also includes the vice versa approach, namely applying classical methods of machine learning to quantum information theory.Although yet in its infancy, quantum machine learning is met with high expectations of providing a solution for big data analysis using the ‘parallel’ power of quantum computation. This trend is underlined by recent investments of companies such as Google and Microsoft into quantum computing hardware and research. However, quantum machine learning is still in its infancy and requires more theoretical foundations as well as solid scientific results in order to mature to a full academic discipline.
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