نتایج جستجو برای: qubit

تعداد نتایج: 11810  

2008
Zhan-jun Zhang

I show a scheme which allows a perfect transfer of an unknown single-qubit atomic state from one atom to another by letting two atoms interact simultaneously with a cavity QED. During the interaction between atom and cavity, the cavity is only virtually excited and accordingly the scheme is insensitive to the cavity field states and cavity decay. Based on this scheme, a network for transfer of ...

2018
Matthew Reagor Christopher B Osborn Nikolas Tezak Alexa Staley Guenevere Prawiroatmodjo Michael Scheer Nasser Alidoust Eyob A Sete Nicolas Didier Marcus P da Silva Ezer Acala Joel Angeles Andrew Bestwick Maxwell Block Benjamin Bloom Adam Bradley Catvu Bui Shane Caldwell Lauren Capelluto Rick Chilcott Jeff Cordova Genya Crossman Michael Curtis Saniya Deshpande Tristan El Bouayadi Daniel Girshovich Sabrina Hong Alex Hudson Peter Karalekas Kat Kuang Michael Lenihan Riccardo Manenti Thomas Manning Jayss Marshall Yuvraj Mohan William O'Brien Johannes Otterbach Alexander Papageorge Jean-Philip Paquette Michael Pelstring Anthony Polloreno Vijay Rawat Colm A Ryan Russ Renzas Nick Rubin Damon Russel Michael Rust Diego Scarabelli Michael Selvanayagam Rodney Sinclair Robert Smith Mark Suska Ting-Wai To Mehrnoosh Vahidpour Nagesh Vodrahalli Tyler Whyland Kamal Yadav William Zeng Chad T Rigetti

We show that parametric coupling techniques can be used to generate selective entangling interactions for multi-qubit processors. By inducing coherent population exchange between adjacent qubits under frequency modulation, we implement a universal gate set for a linear array of four superconducting qubits. An average process fidelity of ℱ = 93% is estimated for three two-qubit gates via quantum...

2016
J. Cramer N. Kalb M. A. Rol B. Hensen M. S. Blok M. Markham D. J. Twitchen R. Hanson T. H. Taminiau

Reliable quantum information processing in the face of errors is a major fundamental and technological challenge. Quantum error correction protects quantum states by encoding a logical quantum bit (qubit) in multiple physical qubits. To be compatible with universal fault-tolerant computations, it is essential that states remain encoded at all times and that errors are actively corrected. Here w...

2013
D. Ristè C. C. Bultink M. J. Tiggelman R. N. Schouten K. W. Lehnert L. DiCarlo

The tunnelling of quasiparticles across Josephson junctions in superconducting quantum circuits is an intrinsic decoherence mechanism for qubit degrees of freedom. Understanding the limits imposed by quasiparticle tunnelling on qubit relaxation and dephasing is of theoretical and experimental interest, particularly as improved understanding of extrinsic mechanisms has allowed crossing the 100 m...

Journal: :iranian journal of science and technology (sciences) 2015
jing-lin xiao

we study the eigenenergies and eigenfunctions of the ground and first excited states (gfes) of an electron strongly coupled to the lo-phonon in an asymmetry quantum dot (aqd) under an applied electric field by using a variational method of the pekar type (vmpt). this aqd two-level system may be viewed as a single qubit. when the electron is in the superposition state (ss) of the gfes, the effec...

2001
José L. Cereceda

We consider a situation in which two parties, Alice and Bob, share a 3-qubit system coupled in an initial maximally entangled, GHZ state. By manipulating locally two of the qubits, Alice can prepare any one of the eight 3-qubit GHZ states. Thus the sending of Alice’s two qubits to Bob, entails 3 bits of classical information which can be recovered by Bob by means of a measurement distinguishing...

Journal: :CoRR 2017
Ritajit Majumdar Susmita Sur-Kolay

Quantum states have high affinity for errors and hence error correction is of utmost importance to realise a quantum computer. Laflamme showed that 5 qubits are necessary to correct a single error on a qubit. In a Pauli error model, four different types of errors can occur on a qubit. Maximally entangled states are orthogonal to each other and hence can be uniquely distinguished by a measuremen...

2010
Joydip Ghosh Michael R. Geller

An approach to the construction of the controlled-NOT quantum logic gate for a four-dimensional coupled-qubit model with weak but otherwise arbitrary coupling has been given recently [M. R. Geller et al., Phys. Rev. A 81, 012320 (2010)]. How does the resulting fidelity depend on the form of qubit-qubit coupling? In this paper we calculate intrinsic fidelity curves (fidelity in the absence of de...

2012
Xin-You Lü S Ashhab Wei Cui Rebing Wu Franco Nori

We theoretically study the implementation of two-qubit gates in a system of two coupled superconducting qubits. In particular, we analyze two-qubit gate operations under the condition that the coupling strength is comparable with or even larger than the anharmonicity of the qubits. By numerically solving the time-dependent Schrödinger equation under the assumption of negligible decoherence, we ...

2011
Shelly Sharma N. K. Sharma

A pair of two level atoms A1A2, prepared either in a separable state or in an entangled state interacts with a single mode of two mode squeezed cavity field while a third atomic qubit B interacts with the second mode of the field in a remote cavity. We analyze, numerically, the dependence of three qubit entanglement generation, sudden death and revival on the degree of squeezing of electromagne...

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