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A continued fraction resummation form of bath
A continued fraction resummation form of bath

... QKE approach. For a small site-site coupling strength, the full quantum kinetic rate kernel can be obtained straightforwardly as the sum of K (2k) up to a converged expansion order. For a large site-site coupling strength which is no longer a small perturbation term, this simple summation cannot be ...
NUCLEAR MAGNETIC RESONANCE QUANTUM COMPUTATION
NUCLEAR MAGNETIC RESONANCE QUANTUM COMPUTATION

Three Myths about Time Reversal in Quantum Theory
Three Myths about Time Reversal in Quantum Theory

Information Geometric Superactivation of Asymptotic Quantum
Information Geometric Superactivation of Asymptotic Quantum

Do relations require underlying intrinsic properties? A physical
Do relations require underlying intrinsic properties? A physical

Reversible Computing - UF CISE
Reversible Computing - UF CISE

Geometry of State Spaces - Institut für Theoretische Physik
Geometry of State Spaces - Institut für Theoretische Physik

Algebraic approach to interacting quantum systems
Algebraic approach to interacting quantum systems

A categorification of a quantum Frobenius map
A categorification of a quantum Frobenius map

No Slide Title
No Slide Title

Life beyond quantum physics
Life beyond quantum physics

Quantum Heat Engines and Refrigerators: Continuous Devices
Quantum Heat Engines and Refrigerators: Continuous Devices

... The device operates as a refrigerator by removing an excitation from the cold bath as well as from the work bath and generating an excitation in the hot bath. The term ↠b̂ĉ in the Hamiltonian of Equation 6 describes this action (see Section 3). One can employ different types of heat baths, inclu ...
RSC_QTECR_ch005 105..131
RSC_QTECR_ch005 105..131

An Introduction to Applied Quantum Mechanics in the Wigner Monte
An Introduction to Applied Quantum Mechanics in the Wigner Monte

Monogamy and ground-state entanglement in highly
Monogamy and ground-state entanglement in highly

The many-worlds interpretation of quantum - Philsci
The many-worlds interpretation of quantum - Philsci

... of consciousnesses, not a multiplicity of physical systems, and the "branching" that occurs is also an essentially psychological process that occurs when a consciousness observes a superposed system: the conscious system goes into superposition, as the Schrodinger equation implies, but thereby split ...
Encoding one logical qubit into six physical qubits
Encoding one logical qubit into six physical qubits

Why Philosophers Should Care About - Philsci
Why Philosophers Should Care About - Philsci

Collective State Measurement of Mesoscopic Ensembles with Single-Atom Resolution
Collective State Measurement of Mesoscopic Ensembles with Single-Atom Resolution

New Class of Quantum Error-Correcting Codes for a Bosonic Mode
New Class of Quantum Error-Correcting Codes for a Bosonic Mode

... coherent states. To create more useful quantum superpositions of photon Fock states which can store quantum information, it is necessary to couple the bosonic mode to a nonlinear element, e.g., a superconducting qubit [41,42], a trapped ion [45–48], or a Rydberg atom [32,33]. Experiments have demons ...
Physics at the FQMT`04 conference
Physics at the FQMT`04 conference

... measurements. The characteristic phenomena for these ‘‘mesoscopic’’ systems are quantum coherence and decoherence, (‘‘thermal’’ and quantum) fluctuations and related noise in measured characteristics, tunnelling effects and dissipation. Under these conditions it is really hard to create a theory for ...
HBNI Th65 - The Institute of Mathematical Sciences
HBNI Th65 - The Institute of Mathematical Sciences

Quantum Measurement Theory
Quantum Measurement Theory

Non-abelian quantum Hall states and fractional charges in one dimension Emma Wikberg
Non-abelian quantum Hall states and fractional charges in one dimension Emma Wikberg

Non-abelian quantum Hall states and fractional charges in
Non-abelian quantum Hall states and fractional charges in

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Quantum teleportation



Quantum teleportation is a process by which quantum information (e.g. the exact state of an atom or photon) can be transmitted (exactly, in principle) from one location to another, with the help of classical communication and previously shared quantum entanglement between the sending and receiving location. Because it depends on classical communication, which can proceed no faster than the speed of light, it cannot be used for faster-than-light transport or communication of classical bits. It also cannot be used to make copies of a system, as this violates the no-cloning theorem. While it has proven possible to teleport one or more qubits of information between two (entangled) atoms, this has not yet been achieved between molecules or anything larger.Although the name is inspired by the teleportation commonly used in fiction, there is no relationship outside the name, because quantum teleportation concerns only the transfer of information. Quantum teleportation is not a form of transportation, but of communication; it provides a way of transporting a qubit from one location to another, without having to move a physical particle along with it.The seminal paper first expounding the idea was published by C. H. Bennett, G. Brassard, C. Crépeau, R. Jozsa, A. Peres and W. K. Wootters in 1993. Since then, quantum teleportation was first realized with single photons and later demonstrated with various material systems such as atoms, ions, electrons and superconducting circuits. The record distance for quantum teleportation is 143 km (89 mi).
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