Incoherent GRAPE (inGRAPE) for optimization of quantum systems with environmentally assisted control

Fuente: arXiv
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Main Authors: Petruhanov, Vadim, Pechen, Alexander
Format: Preprint
Published: 2024
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author Petruhanov, Vadim
Pechen, Alexander
author_facet Petruhanov, Vadim
Pechen, Alexander
contents In this work, we review several results on development and application of incoherent version of GRAPE (Gradient Ascent Pulse Engineering) approach, inGRAPE, to optimization for open quantum systems driven by both coherent and incoherent controls. In the incoherent control approach, the environment serves as a control together with coherent field, and decoherence rates become generally time-dependent. For a qubit, explicit analytic expressions for evolution of the density matrix were obtained by solving a cubic equation via Cardano method. We discuss applications of incoherent GRAPE method to high fidelity gate generation for open one- and two-qubit systems and surprising properties of the underlying control landscapes, forming two groups - smooth single peak landscapes for Hadamard, C-NOT and C-Z gates, and more complicated with two peaks for T (or $π/8$) gate. For a qutrit, a formulation of the environment-assisted incoherent control with time-dependent decoherence rates is provided.
format Preprint
id arxiv_https___arxiv_org_abs_2403_17388
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Incoherent GRAPE (inGRAPE) for optimization of quantum systems with environmentally assisted control
Petruhanov, Vadim
Pechen, Alexander
Quantum Physics
81Q93
In this work, we review several results on development and application of incoherent version of GRAPE (Gradient Ascent Pulse Engineering) approach, inGRAPE, to optimization for open quantum systems driven by both coherent and incoherent controls. In the incoherent control approach, the environment serves as a control together with coherent field, and decoherence rates become generally time-dependent. For a qubit, explicit analytic expressions for evolution of the density matrix were obtained by solving a cubic equation via Cardano method. We discuss applications of incoherent GRAPE method to high fidelity gate generation for open one- and two-qubit systems and surprising properties of the underlying control landscapes, forming two groups - smooth single peak landscapes for Hadamard, C-NOT and C-Z gates, and more complicated with two peaks for T (or $π/8$) gate. For a qutrit, a formulation of the environment-assisted incoherent control with time-dependent decoherence rates is provided.
title Incoherent GRAPE (inGRAPE) for optimization of quantum systems with environmentally assisted control
topic Quantum Physics
81Q93
url https://arxiv.org/abs/2403.17388