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Description
Classiq is a platform for quantum computing software that streamlines the creation, enhancement, analysis, and execution of quantum algorithms. It effectively converts high-level functional models into optimized quantum circuits, enabling users to swiftly design circuits with varying qubit counts, such as 100, 1,000, or even 10,000, which can be executed on any gate-based system or cloud provider. The platform provides a comprehensive environment for quantum application development, fostering internal expertise and the creation of reusable quantum intellectual property. Classiq's Quantum Algorithm Design platform automates the intricate task of translating high-level functional models into optimized quantum circuits, making it easier to design and code at a higher level of abstraction. Users are thus empowered to concentrate on the "what" of their algorithm, while the system automatically generates the "how," producing a circuit that fulfills the required functionality and adheres to system limitations. This innovative approach not only enhances efficiency but also allows for greater creativity in quantum algorithm design.
Description
The development of large-scale physical quantum computers is proving to be a formidable task, and in parallel with efforts to create these machines, considerable attention is being directed towards crafting effective quantum algorithms. Without a fully realized large quantum computer, it becomes essential to utilize precise software simulations on classical systems to replicate the execution of these quantum algorithms, allowing researchers to analyze quantum computer behavior and refine their designs. In addition to simulating ideal, error-free quantum circuits on a faultless quantum computer, the QX simulator offers the capability to model realistic noisy executions by incorporating various error models, such as depolarizing noise. Users have the option to activate specific error models and set a physical error probability tailored to mimic a particular target quantum computer. This defined error rate can be based on factors like gate fidelity and qubit decoherence characteristics of the intended platform, ultimately aiding in the realistic assessment of quantum computation capabilities. Thus, these simulations not only inform the design of future quantum computers but also enhance our understanding of the complexities involved in quantum processing.
API Access
Has API
API Access
Has API
Integrations
No details available.
Integrations
No details available.
Pricing Details
No price information available.
Free Trial
Free Version
Pricing Details
No price information available.
Free Trial
Free Version
Deployment
Web-Based
On-Premises
iPhone App
iPad App
Android App
Windows
Mac
Linux
Chromebook
Deployment
Web-Based
On-Premises
iPhone App
iPad App
Android App
Windows
Mac
Linux
Chromebook
Customer Support
Business Hours
Live Rep (24/7)
Online Support
Customer Support
Business Hours
Live Rep (24/7)
Online Support
Types of Training
Training Docs
Webinars
Live Training (Online)
In Person
Types of Training
Training Docs
Webinars
Live Training (Online)
In Person
Vendor Details
Company Name
Classiq
Founded
2020
Country
Global
Website
www.classiq.io
Vendor Details
Company Name
Quantum Computing Simulation
Website
quantum-studio.net