Realization of quantum gates based on three-dimensional harmonic oscillator in a time-varying electromagnetic field
DOI10.1007/s11128-015-1061-6zbMath1325.81049OpenAlexW2272909394MaRDI QIDQ747803
Tarun Kumar Rawat, Garv Chauhan, Kumar Gautam, Navneet K. Sharma, Harish Parthasarathy
Publication date: 19 October 2015
Published in: Quantum Information Processing (Search for Journal in Brave)
Full work available at URL: https://doi.org/10.1007/s11128-015-1061-6
perturbation theoryLagrange multiplierSchrödinger equationquantum gate3-D quantum harmonic oscillatorsDyson series
Quantum computation (81P68) Closed and approximate solutions to the Schrödinger, Dirac, Klein-Gordon and other equations of quantum mechanics (81Q05) Perturbation theories for operators and differential equations in quantum theory (81Q15)
Related Items (3)
Cites Work
- Unnamed Item
- Unnamed Item
- Lie algebras of differential operators and Lie-algebraic potentials
- Coherent states and applications in mathematical physics.
- On the role of Hadamard gates in quantum circuits
- A brief survey of the mathematics of quantum physics
- Linear trimmed means for the linear regression with AR(1) errors model
- Quantum noise
- Parameter differentiation and quantum state decomposition for time varying Schrödinger equations
- Perturbation theory for linear operators.
- Direct implementation of an \(N\)-qubit controlled-unitary gate in a single step
- Superpositions of the \(\text{SU}(1,1)\) coherent states
- C-NOT three-gates performance by coherent cavity field and its optimized quantum applications
- Constructing quantum logic gates using \(q\)-deformed harmonic oscillator algebras
- Information and computation: Classical and quantum aspects
- Quantum algorithms revisited
- Coherent and Incoherent States of the Radiation Field
This page was built for publication: Realization of quantum gates based on three-dimensional harmonic oscillator in a time-varying electromagnetic field