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Quantum Control
Quantum Control

QIPC 2011
QIPC 2011

Part IV
Part IV

... • Quantum information is radically different to its classical counterpart. This is because the superposition principle allows for many possible states. • Our inability to measure every property we might like leads to information security, but generalised measurements allow more possibilities than th ...
Quantum measurements of coupled systems * L. Fedichkin, M. Shapiro,
Quantum measurements of coupled systems * L. Fedichkin, M. Shapiro,

ppt1 - Zettaflops
ppt1 - Zettaflops

... by quantum error correction techniques developed ...
Quantum Computation and Statistical Physics
Quantum Computation and Statistical Physics

Quantum computation communication theory
Quantum computation communication theory

Nanodevices for quantum computation
Nanodevices for quantum computation

QUANTUM KEY DISTRIBUTION 1. Cryptography In the course of
QUANTUM KEY DISTRIBUTION 1. Cryptography In the course of

6.845 Quantum Complexity Theory, Lecture 02
6.845 Quantum Complexity Theory, Lecture 02

The CNOT Quantum Gate
The CNOT Quantum Gate

The Future of Computer Science
The Future of Computer Science

Problem 3: Teleporting an Entangled State
Problem 3: Teleporting an Entangled State

Lecture 2 - Artur Ekert
Lecture 2 - Artur Ekert

AdiabaticQC - University of California, Berkeley
AdiabaticQC - University of California, Berkeley

Powerpoint 7/20
Powerpoint 7/20

tions processing as well as in quantum information processing. In anal
tions processing as well as in quantum information processing. In anal

... Information is quantized in classical digital informations processing as well as in quantum information processing. In analogy to the classical bit, the elementary quantum of information in quantum information processing is called a qubit. In the first part of this chapter we will learn how qubits c ...
ISCQI-Dec_Bhubaneswar
ISCQI-Dec_Bhubaneswar

PPT
PPT

Coupling Josephson qubits via a current
Coupling Josephson qubits via a current

Quantum Computers and Cryptography
Quantum Computers and Cryptography

Resilient Quantum Computation in Correlated Environments: A Quantum Phase Transition Perspective
Resilient Quantum Computation in Correlated Environments: A Quantum Phase Transition Perspective

... Therefore, for a given noise model, one can always engineer an irrelevant flow. Connection to the AKP results.—In Ref. [8], a family of long-ranged noise models with interactions between qubits was studied. AKP considered a power law interaction between any two qubits at positions x1 and x2 of the c ...
Lecture 6
Lecture 6

Lecture 5
Lecture 5

High-fidelity Z-measurement error encoding of optical qubits
High-fidelity Z-measurement error encoding of optical qubits

... states are robust against accidental Z measurement. The encoding of Eq. 共1兲 also forms the basic element in a redundancy code, which can be used to correct for photon loss errors 关23兴: 兩␺典LL = ␣兩0典L兩0典L + ␤兩1典L兩1典L. For these reasons it is important to show that qubit states can be encoded with high ...
< 1 ... 15 16 17 18 19 20 21 >

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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