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Fault-tolerant quantum repeater with atomic ensembles and linear
Fault-tolerant quantum repeater with atomic ensembles and linear

Quantum Computation: Theory and Implementation
Quantum Computation: Theory and Implementation

23 - Electronic Colloquium on Computational Complexity
23 - Electronic Colloquium on Computational Complexity

Frozen Quantum Coherence - School of Mathematical Sciences
Frozen Quantum Coherence - School of Mathematical Sciences

... the formal equivalence between a system of N qubits and a single qudit with dimension d ¼ 2N , our results can also be interpreted as providing universal freezing conditions for all bona fide distance-based measures of coherence in a single 2N -dimensional system with any even N. Naturally, one may ...
Chapter 7 Quantum Error Correction
Chapter 7 Quantum Error Correction

... theory in two important ways. We will see that the recovery procedure can work e ectively even if occasional errors occur during recovery. And we will learn how to process encoded information, so that a quantum computation can be executed successfully despite the debilitating e ects of decoherence a ...
Chapter 7 Quantum Error Correction
Chapter 7 Quantum Error Correction

... theory in two important ways. We will see that the recovery procedure can work effectively even if occasional errors occur during recovery. And we will learn how to process encoded information, so that a quantum computation can be executed successfully despite the debilitating effects of decoherence ...
Circuit QED: Superconducting Qubits Coupled to
Circuit QED: Superconducting Qubits Coupled to

Non-Markovian entanglement dynamics between two coupled
Non-Markovian entanglement dynamics between two coupled

EXORCIST XIV: The Wrath of Maxwell`s Demon. Part II
EXORCIST XIV: The Wrath of Maxwell`s Demon. Part II

... While there may be no universal principle relating an entropy cost to information processing, it remains open whether such a principle obtains in the restricted context of particular theories. A persistent but minority view holds that quantum mechanics provides such a context. We will register our d ...
EXORCIST XIV: The Wrath of Maxwell`s Demon. Part II. From Szilard
EXORCIST XIV: The Wrath of Maxwell`s Demon. Part II. From Szilard

... While there may be no universal principle relating an entropy cost to information processing, it remains open whether such a principle obtains in the restricted context of particular theories. A persistent but minority view holds that quantum mechanics provides such a context. We will register our d ...
Quantum Error Correction (QEC) - ETH E
Quantum Error Correction (QEC) - ETH E

Quantum Computing
Quantum Computing

Quantum Computing - Lecture Notes - Washington
Quantum Computing - Lecture Notes - Washington

... This is the remarkable thing about entanglement. By measuring one qubit we can affect the probability amplitudes of the other qubits in a system! How to think about this process in an abstract way is an open challenge in quantum computing. The difficulty is the lack of any classical analog. One usef ...
Quantum Information Processing with
Quantum Information Processing with

... ‘transmon’ charge qubits are capacitively coupled to a one-dimensional microwave transmission line resonator which serves as a quantum bus. Single-qubit rotations can be applied through the resonator and their operation is characterized using various benchmarking techniques. Through a virtual photon ...
Chapter 6 Quantum Computation
Chapter 6 Quantum Computation

... There is much more to say about complexity theory, but we will be content to mention one more element that relates to the discussion of quantum complexity. It is sometimes useful to consider probabilistic circuits that have access to a random number generator. For example, a gate in a probabilistic ...
Quantum distributed computing - Technion
Quantum distributed computing - Technion

... Communication complexity is the study of the amount of communication required to compute functions on distributed data in a context of honest cooperating players. It was first introduced by Harold Abelson [3] and given in its current form by Andrew Yao [52]. A good reference on classical communicati ...
Neutral Atom Quantum Computing with Rydberg Blockade
Neutral Atom Quantum Computing with Rydberg Blockade

Two-resonator circuit quantum electrodynamics: Dissipative theory
Two-resonator circuit quantum electrodynamics: Dissipative theory

Classical Simulation of Quantum Systems
Classical Simulation of Quantum Systems

Quantum Information Processing - LANL Research Library
Quantum Information Processing - LANL Research Library

Quantum computing with photons: introduction to the circuit model
Quantum computing with photons: introduction to the circuit model

Topological quantum memory
Topological quantum memory

Quantum Information Chapter 10. Quantum Shannon Theory
Quantum Information Chapter 10. Quantum Shannon Theory

... Shannon theory, but there is a lot we won’t cover. For example, we will mostly consider information theory in an asymptotic setting, where the same quantum channel or state is used arbitrarily many times, thus focusing on issues of principle rather than more practical questions about devising effici ...
Toward Quantum Computational Agents.
Toward Quantum Computational Agents.

Quantum Information Chapter 10. Quantum Shannon Theory
Quantum Information Chapter 10. Quantum Shannon Theory

... but there is a lot we won’t cover. For example, we will mostly consider information theory in an asymptotic setting, where the same quantum channel or state is used arbitrarily many times, thus focusing on issues of principle rather than more practical questions about devising efficient protocols. ...
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Algorithmic cooling

Algorithmic cooling is a phenomenon in quantum computation in which the processing of certain types of computation results in negative entropy and thus a cooling effect.The phenomenon is a result of the connection between thermodynamics and information theory. In so far as information is encoded in physical systems it is subject to the laws of thermodynamics.Certain processes within computation require a change in entropy within the computing system. As data must be stored as some kind of ordered structure (like a localized charge in a capacitor) so the erasure of data by destroying this order must involve an increase in disorder, or entropy. This means that the erasure of data releases heat. This is Landauer's principle.Reversible computing or Adiabatic computing is a theoretical type of computing in which data is never erased, it just changes state or is marked to be ignored. In theory such a system would be able to ""hide"" data without releasing heat.In the case of quantum entangled data, or qubits, it is possible for a computation to result in negative entropy, actually transferring heat out of the computational system, and so cooling it.
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