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QEDMA

Qedma develops quantum error suppression and characterization software that enhances the performance of noisy quantum processors by providing real-time error metrics and mitigation strategies. Their solutions enable quantum computing companies to achieve high accuracy in algorithm execution, addressing the limitations of current quantum hardware.

Founded 2020262K+ followers
Updated 4 months ago

Funding

$4.7M raised to dateRaised to date based on public sources. This may differ from the amount the company actually raised and is based only on what is publicly available on the internet.

Funding rounds are not available yet.

Founders

Founder details are not available yet.

Product

Problem

Current quantum computers are too noisy to execute useful quantum algorithms with high accuracy. Existing quantum hardware suffers from errors during quantum gate operations and full computational layers, limiting the potential of quantum computation.

Solution

Qedma develops quantum error suppression and characterization software designed to enhance the performance of noisy quantum processors. Their quantum error suppression and error mitigation (QESEM) solution transforms algorithms designed for error-free quantum computers into versions that can be executed with higher accuracy on today's hardware. Additionally, their characterization software provides detailed, high-precision analysis of multi-qubit systems, enabling developers to improve quantum processor design and reduce errors. The software offers a flexible, cross-platform tool for quantum hardware developers, delivering key error parameters in real time with speed and accuracy.

Target Audience

Qedma's primary customers are quantum computing companies and quantum hardware developers seeking to improve the accuracy and performance of their quantum processors.

Features

  • Quantum error suppression and error mitigation (QESEM) transforms algorithms for noisy quantum computers.
  • Characterization protocols provide detailed analysis of errors during each quantum gate operation.
  • High-speed and high-accuracy trade-offs in error characterization.
  • Cross-platform compatibility for various quantum computing platforms.
  • Real-time delivery of key error parameters.
  • Experimentally tested and verified characterization software.
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