Designing high-fidelity multi-qubit gates for semiconductor quantum dots through deep reinforcement learning

06/15/2020
by   Sahar Daraeizadeh, et al.
0

In this paper, we present a machine learning framework to design high-fidelity multi-qubit gates for quantum processors based on quantum dots in silicon, with qubits encoded in the spin of single electrons. In this hardware architecture, the control landscape is vast and complex, so we use the deep reinforcement learning method to design optimal control pulses to achieve high fidelity multi-qubit gates. In our learning model, a simulator models the physical system of quantum dots and performs the time evolution of the system, and a deep neural network serves as the function approximator to learn the control policy. We evolve the Hamiltonian in the full state-space of the system, and enforce realistic constraints to ensure experimental feasibility.

READ FULL TEXT

page 1

page 2

page 3

page 4

research
07/12/2016

Learning in Quantum Control: High-Dimensional Global Optimization for Noisy Quantum Dynamics

Quantum control is valuable for various quantum technologies such as hig...
research
03/01/2023

Qompress: Efficient Compilation for Ququarts Exploiting Partial and Mixed Radix Operations for Communication Reduction

Quantum computing is in an era of limited resources. Current hardware la...
research
02/16/2022

Holonomic control of a three-qubits system in an NV center using a near-term quantum computer

The holonomic approach to controlling (nitrogen-vacancy) NV-center qubit...
research
09/27/2019

Deep Reinforcement Learning Based Power control for Wireless Multicast Systems

We consider a multicast scheme recently proposed for a wireless downlink...
research
10/16/2020

Autonomous Control of a Particle Accelerator using Deep Reinforcement Learning

We describe an approach to learning optimal control policies for a large...
research
12/31/2020

Curriculum-based Deep Reinforcement Learning for Quantum Control

Deep reinforcement learning has been recognized as an efficient techniqu...
research
07/26/2019

Learning to Solve a Rubik's Cube with a Dexterous Hand

We present a learning-based approach to solving a Rubik's cube with a mu...

Please sign up or login with your details

Forgot password? Click here to reset