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Quantum information for semiclassical optics
Quantum information for semiclassical optics

Article. - NUS School of Computing
Article. - NUS School of Computing

PowerPoint - Isaac Newton Institute for Mathematical Sciences
PowerPoint - Isaac Newton Institute for Mathematical Sciences

From Gravitational Wave Detectors to Completely Positive Maps and
From Gravitational Wave Detectors to Completely Positive Maps and

powerpoint
powerpoint

... your superpower?". Everyone has superpowers, even if their individual beliefs may hinder their development. This talk is for you, whether you disbelieve in superpowers because "science says it impossible" or you already know one of your superpowers. We will discuss the science behind how the mind ca ...
How to test the “quantumness” of a quantum computer?
How to test the “quantumness” of a quantum computer?

Slides. - Shelby Kimmel
Slides. - Shelby Kimmel

Review by Robert Charman in Journal of the Society for Psychical
Review by Robert Charman in Journal of the Society for Psychical

Quantum_Circuit_Proj.. - UTK-EECS
Quantum_Circuit_Proj.. - UTK-EECS

... an X gate to one of qubits 4 to 6. Finally, apply your circuit for syndrome extraction. Run your quantum program and include a screen shot showing your circuit and the final register state. Explain why the final state is correct (assuming that it is!). (Note: you cannot measure t ...
Landahl.quantum.errorcor
Landahl.quantum.errorcor

Classical and Quantum Error Correction
Classical and Quantum Error Correction

Introduction to Science of Spiritual
Introduction to Science of Spiritual

LEAR IG PATHS OF HIGH SCHOOL STUDE TS I QUA TUM MECHA
LEAR IG PATHS OF HIGH SCHOOL STUDE TS I QUA TUM MECHA

MORE ON ERROR CORRECTION. Slides in PPT.
MORE ON ERROR CORRECTION. Slides in PPT.

What is the correct framework for Quantum Field Theories?
What is the correct framework for Quantum Field Theories?

Curriculum Vitae - Quantum Information Theory and Cryptography
Curriculum Vitae - Quantum Information Theory and Cryptography

... Presented at QIP 2013 as a contributed talk (approximately 20% acceptance rate). We study the class of quantum operations which can be implemented by distant parties that are restricted to local quantum operations and classical communication (LOCC). While LOCC emerges as the natural class of operati ...
ppt - University of New Mexico
ppt - University of New Mexico

Quantum States and Propositions
Quantum States and Propositions

Quantum Computation and Quantum Information – Lecture 3
Quantum Computation and Quantum Information – Lecture 3

here - Nick Papanikolaou
here - Nick Papanikolaou

1 - Cheriton School of Computer Science
1 - Cheriton School of Computer Science

... Quantum mechanical effects occur at this scale: • Measuring a state (e.g. position) disturbs it • Quantum systems sometimes seem to behave as if they are in several states at once • Different evolutions can interfere with each other ...
1 - the David R. Cheriton School of Computer Science
1 - the David R. Cheriton School of Computer Science

... Quantum mechanical effects occur at this scale: • Measuring a state (e.g. position) disturbs it • Quantum systems sometimes seem to behave as if they are in several states at once • Different evolutions can interfere with each other ...
Effects of Decoherence in Quantum Control and Computing
Effects of Decoherence in Quantum Control and Computing

PDF
PDF

Theoretical and empirical reasons for considering the application of
Theoretical and empirical reasons for considering the application of

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Quantum cognition

Quantum cognition is an emerging field which applies the mathematical formalism of quantum theory to model cognitive phenomena such as information processing by the human brain, decision making, human memory, concepts and conceptual reasoning, human judgment, and perception. The field clearly distinguishes itself from the quantum mind as it is not reliant on the hypothesis that there is something micro-physical quantum mechanical about the brain. Quantum cognition is based on the quantum-like paradigm or generalized quantum paradigm or quantum structure paradigm that information processing by complex systems such as the brain, taking into account contextual dependence of information and probabilistic reasoning, can be mathematically described in the framework of quantum information and quantum probability theory.Quantum cognition uses the mathematical formalism of quantum theory to inspire and formalize models of cognition that aim to be an advance over models based on traditional classical probability theory. The field focuses on modeling phenomena in cognitive science that have resisted traditional techniques or where traditional models seem to have reached a barrier (e.g., human memory ), and modeling preferences in decision theory that seem paradoxical from a traditional rational point of view (e.g., preference reversals ). Since the use of a quantum-theoretic framework is for modeling purposes, the identification of quantum structures in cognitive phenomena does not presuppose the existence of microscopic quantum processes in the human brain.
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