4.5 Article

Implementation of three efficient 4-digit fault-tolerant quantum carry lookahead adders

相关参考文献

注意:仅列出部分参考文献,下载原文获取全部文献信息。
Article Computer Science, Artificial Intelligence

Quantum Machine Learning: A tutorial

Jose D. Martin-Guerrero et al.

Summary: This tutorial provides an overview of Quantum Machine Learning (QML), a discipline that combines concepts from Machine Learning (ML), Quantum Computing (QC), and Quantum Information (QI). QC has experienced significant development with the involvement of large technological companies and the success of ML, making QML a major field for researchers working at the intersection of Physics, Mathematics, and Computer Science. QML methods can be classified into those that use ML in a quantum experimentation environment and those that utilize QC and QI to find alternative and improved solutions to data-driven problems, often resulting in considerable speedup and enhanced performances.

NEUROCOMPUTING (2022)

Article Optics

Fault-tolerant quantum reversible full adder/subtractor: Design and implementation

Seyyed Mohammad Amir Mirizadeh et al.

Summary: This paper introduces the importance of ALU in quantum computers and the significance of fault-tolerant circuit designs and reversible quantum circuits. Two novel reversible fault-tolerant designs are proposed, which can detect errors and perform addition and subtraction operations, with higher performance and efficiency.
Proceedings Paper Computer Science, Information Systems

Experimental Evaluation of Adder Circuits on IBM QX Hardware

Divyanshu Singh et al.

Summary: This work experimentally evaluated the performance of quantum adders on various IBM quantum hardware. The analysis showed that IBM Athens provides the best accuracy results for the one-qubit quantum adder.

INVENTIVE COMPUTATION AND INFORMATION TECHNOLOGIES, ICICIT 2021 (2022)

Article Computer Science, Hardware & Architecture

Optimal fault-tolerant quantum comparators for image binarization

F. Orts et al.

Summary: This paper presents a quantum circuit for image binarization based on two novel comparators, which have been compared with other state-of-the-arts comparators to show that they are the best option in cases where noise is a problem and reduction is necessary.

JOURNAL OF SUPERCOMPUTING (2021)

Article Quantum Science & Technology

Error mitigation with Clifford quantum-circuit data

Piotr Czarnik et al.

Summary: A novel error-mitigation method for gate-based quantum computers is proposed in this study, which generates training data in quantum circuits and fits a linear ansatz to predict noise-free observables for arbitrary circuits. The method achieves an order-of-magnitude error reduction under various conditions.

QUANTUM (2021)

Article Computer Science, Information Systems

T-Count Optimized Quantum Circuit Designs for Single-Precision Floating-Point Division

S. S. Gayathri et al.

Summary: The implementation of quantum computing processors for scientific applications involves the use of quantum floating point circuits for arithmetic operations. This study adopts various division algorithms for floating-point numbers and provides resource estimates for the proposed circuits. By improving the LZD unit structure, the proposed division circuits show a significant reduction in T-count compared to existing works.

ELECTRONICS (2021)

Review Computer Science, Hardware & Architecture

A review on reversible quantum adders

F. Orts et al.

JOURNAL OF NETWORK AND COMPUTER APPLICATIONS (2020)

Article Quantum Science & Technology

Data re-uploading for a universal quantum classifier

Adrian Perez-Salinas et al.

QUANTUM (2020)

Article Optics

Reducing the number of non-Clifford gates in quantum circuits

Aleks Kissinger et al.

PHYSICAL REVIEW A (2020)

Article Quantum Science & Technology

An optimized quantum circuit for converting from sign-magnitude to two's complement

F. Orts et al.

QUANTUM INFORMATION PROCESSING (2019)

Article Quantum Science & Technology

Halving the cost of quantum addition

Craig Gidney

QUANTUM (2018)

Article Engineering, Electrical & Electronic

Design of Optimized Reversible Squaring and Sum-of-Squares Units

A. N. Nagamani et al.

CIRCUITS SYSTEMS AND SIGNAL PROCESSING (2018)

Article Quantum Science & Technology

Quantum Computing in the NISQ era and beyond

John Preskill

QUANTUM (2018)

Article Computer Science, Hardware & Architecture

CL-CPA: A hybrid carry-lookahead/carry-propagate adder for low-power or high-performance operation mode

Milad Bahadori et al.

INTEGRATION-THE VLSI JOURNAL (2017)

Article Quantum Science & Technology

Fault-tolerant, high-level quantum circuits: form, compilation and description

Alexandru Paler et al.

QUANTUM SCIENCE AND TECHNOLOGY (2017)

Article Physics, Multidisciplinary

An introduction to quantum machine learning

Maria Schuld et al.

CONTEMPORARY PHYSICS (2015)

Proceedings Paper Automation & Control Systems

Design of a Compact Reversible Carry Look-Ahead Adder Using Dynamic Programming

Nusrat Jahan Lisa et al.

2015 28TH INTERNATIONAL CONFERENCE ON VLSI DESIGN (VLSID) (2015)

Article Computer Science, Hardware & Architecture

Polynomial-Time T-Depth Optimization of Clifford plus T Circuits Via Matroid Partitioning

Matthew Amy et al.

IEEE TRANSACTIONS ON COMPUTER-AIDED DESIGN OF INTEGRATED CIRCUITS AND SYSTEMS (2014)

Article Computer Science, Hardware & Architecture

A Meet-in-the-Middle Algorithm for Fast Synthesis of Depth-Optimal Quantum Circuits

Matthew Amy et al.

IEEE TRANSACTIONS ON COMPUTER-AIDED DESIGN OF INTEGRATED CIRCUITS AND SYSTEMS (2013)

Article Computer Science, Hardware & Architecture

Quantum circuit placement

Dmitri Maslov et al.

IEEE TRANSACTIONS ON COMPUTER-AIDED DESIGN OF INTEGRATED CIRCUITS AND SYSTEMS (2008)

Article Optics

Methodology for quantum logic gate construction

XL Zhou et al.

PHYSICAL REVIEW A (2000)

Article Computer Science, Information Systems

A new universal and fault-tolerant quantum basis

PO Boykin et al.

INFORMATION PROCESSING LETTERS (2000)