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Entropica Labs

Entropica Labs develops the Loom software platform, which automates the design and analysis of quantum error correction codes and transforms quantum programs into fault-tolerant circuits. This technology addresses the challenge of fault-tolerance in quantum computing, enabling researchers and developers to create reliable, hardware-ready quantum applications.

Singapore, SingaporeFounded 2018203K+ followers
Updated 8 months ago

Funding

$7.3M 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.

CVEVSCSF+2

Founders

Product

Problem

Quantum computing faces a significant hurdle in the form of quantum errors, which are inherent to quantum systems and can lead to incorrect computational results. Designing and implementing quantum error correction (QEC) codes to mitigate these errors is a complex and time-consuming process, requiring specialized expertise. The lack of accessible tools hinders the development of reliable, fault-tolerant quantum applications.

Solution

Entropica Labs' Loom is a software platform designed to automate the design, analysis, and implementation of quantum error correction codes, enabling the creation of fault-tolerant quantum circuits. Loom simplifies the complexities of QEC by providing automation tools and graphical user interfaces for designing and analyzing quantum error correction codes and fault-tolerant circuits. The platform transforms quantum programs into fault-tolerant circuits, integrating error correction and hardware features to run on multiple target hardware platforms. By connecting the algorithmic layer with the control and hardware layer, Loom facilitates fault-tolerant quantum computations, bridging the gap between theoretical algorithms and practical hardware implementation.

Target Audience

The primary users are quantum computing researchers, developers, and hardware companies seeking to design, test, and implement fault-tolerant quantum applications and shorten the path to fault-tolerance through QEC-hardware co-design.

Features

  • Automated design and analysis of quantum error correction codes
  • Graphical user interfaces for visualizing and manipulating QEC codes and fault-tolerant circuits
  • Transformation of quantum programs into fault-tolerant executable circuits
  • Integration of error correction with hardware features for multiple target platforms
  • Tools for co-designing QEC codes and hardware architectures
  • Simulation and validation of fault-tolerant quantum circuits
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