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Quantum Parallelism (The Abstract of a Tutorial)
Quantum Parallelism (The Abstract of a Tutorial)

Inhomogeneous boundary effects in semiconductor quantum wires
Inhomogeneous boundary effects in semiconductor quantum wires

Quantum Computing Lecture 1 What is Quantum Computing?
Quantum Computing Lecture 1 What is Quantum Computing?

Narrowband polarization-entangled photon pairs distributed over a
Narrowband polarization-entangled photon pairs distributed over a

... 1555 nm photon is sent over optical telecom fiber to Bob, who performs his own polarization analysis. In the signal arm, the random choice of the two conjugate measurement bases (H/V for horizontal/vertical and D/A for diagonal/anti-diagonal) is made passively by a 50/50 beam-splitter (BS). For each ...
R-parity Violating SUSY
R-parity Violating SUSY

Quantum Computers that can be Simulated Classically in
Quantum Computers that can be Simulated Classically in

On the Utility of Entanglement in Quantum Neural Computing
On the Utility of Entanglement in Quantum Neural Computing

in PPT
in PPT

Arbitrarily Small Amount of Measurement Independence Is Sufficient
Arbitrarily Small Amount of Measurement Independence Is Sufficient

Quantum Computing Lecture 1 Bits and Qubits What is Quantum
Quantum Computing Lecture 1 Bits and Qubits What is Quantum

... Postulate 1: A closed system is described by a unit vector in a complex inner product space. Postulate 2: The evolution of a closed system in a fixed time interval is described by a unitary transform. Postulate 3: If we measure the state |ψi of a system in an orthonormal basis |0i · · · |n − 1i, we ...
Temperature Dependence of the Energy Gap of InP Quantum Dots
Temperature Dependence of the Energy Gap of InP Quantum Dots

A Functional Architecture for Scalable Quantum Computing
A Functional Architecture for Scalable Quantum Computing

... qubit gates and 102 ns for the SWAP class gates in the 40qubit example from Figure 2, with an average T1 = 10µs, and two-qubit fidelity of 99.69% would result in a TQF of 3921. From an algorithmic perspective, TQF gives a rough estimates of the size of the quantum circuit (circuit width times circui ...
Effect of quantum fluctuations on structural phase transitions in
Effect of quantum fluctuations on structural phase transitions in

Details
Details

A new theory of the origin of cancer
A new theory of the origin of cancer

... diameter, much smaller than mitotic spindles). Center: centriole as two perpendicular cylinders. Clockwise from center (G1, S, and G2 occur during “Interphase” which precedes and follows mitosis): in G1 phase centriole cylinders separate. In S phase centrioles replicate, each cylinder forming a new ...
Effects of Decoherence in Quantum Control and Computing
Effects of Decoherence in Quantum Control and Computing

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

Free-Space distribution of entanglement and single photons over
Free-Space distribution of entanglement and single photons over

Prime Factorization Using Quantum Annealing and Algebraic
Prime Factorization Using Quantum Annealing and Algebraic

Quantum Information—S. Lloyd, L. Levitov, T. Orlando, J. H. Shapiro, N.C. Wong
Quantum Information—S. Lloyd, L. Levitov, T. Orlando, J. H. Shapiro, N.C. Wong

Quantum state majorization at the output of bosonic Gaussian
Quantum state majorization at the output of bosonic Gaussian

Lecture 6: QUANTUM CIRCUITS 1. Simple Quantum Circuits We`ve
Lecture 6: QUANTUM CIRCUITS 1. Simple Quantum Circuits We`ve

URL - StealthSkater
URL - StealthSkater

... The process in which proteins covered by ordered water analogous to ice temporarily melt and form aggregates is a basic process induced by the feed of energy to the cellular system and could be compared to cellular summer. This process could mean quite generally molecular re-programming induced by ...
PDF
PDF

Optimized Reversible Vedic Multipliers for High Speed Low Power
Optimized Reversible Vedic Multipliers for High Speed Low Power

... zero, the energy reduces two orders of magnitude but using reversible computing there can be further more reduction that ...
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Quantum dot cellular automaton

Quantum dot cellular automata (sometimes referred to simply as quantum cellular automata, or QCA) are proposed models of quantum computation, which have been devised in analogy to conventional models of cellular automata introduced by von Neumann.
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