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What is Qiskit?

Qiskit provides a comprehensive suite of quantum gates along with a variety of pre-constructed circuits, ensuring that users with different levels of expertise can participate in research and development effectively. The transpiler plays a crucial role by transforming Qiskit code into an optimized circuit that aligns with the specific gate set of a chosen backend, allowing users to program any quantum processor they prefer. Furthermore, users can choose to utilize the default optimization settings, implement their own custom configurations, or even design unique plugins. Qiskit also streamlines the scheduling and execution of quantum programs on both local simulators and cloud-based quantum processors, making it versatile for different applications. It supports a range of quantum hardware architectures, such as superconducting qubits and trapped ions, catering to a wide array of experimental setups. For those interested in exploring Qiskit's capabilities, a great starting point is to learn how to use the platform in either a cloud setting or within a local Python environment. By providing these resources and flexible options, Qiskit not only encourages innovation but also allows researchers and developers to explore quantum computing's potential more extensively than previously imagined. This capacity for customization and adaptability positions Qiskit as a significant tool in advancing the field of quantum technology.

What is QX Simulator?

Building large-scale physical quantum computers is a challenging endeavor, and alongside the pursuit of creating such machines, significant focus is also placed on developing efficient quantum algorithms. In the absence of fully functioning large quantum computers, it becomes crucial to employ accurate software simulations on traditional systems to emulate the performance of these quantum algorithms, enabling researchers to study and improve quantum computer functionalities. The QX simulator, for example, not only allows for the simulation of ideal, error-free quantum circuits as if on a perfect quantum computer, but it also provides the ability to model realistic scenarios with inherent noise by integrating various error models, including depolarizing noise. Users can select specific error models and assign a physical error probability to closely reflect a particular target quantum computer's performance. This specified error rate can be influenced by elements such as gate fidelity and the decoherence properties of the qubits associated with the desired platform, ultimately contributing to a more accurate evaluation of potential quantum computation capabilities. Consequently, these simulations serve not only as a guide for the development of future quantum computers but also deepen our comprehension of the intricate challenges present in quantum processing, paving the way for advancements in this exciting field. Moreover, as researchers continue to refine these simulation techniques, the insights gained may lead to breakthroughs that accelerate the practical realization of quantum computing technologies.

Media

Media

Integrations Supported

Python
Q-CTRL
Superstaq

Integrations Supported

Python
Q-CTRL
Superstaq

API Availability

Has API

API Availability

Has API

Pricing Information

Pricing not provided.
Free Trial Offered?
Free Version

Pricing Information

Pricing not provided.
Free Trial Offered?
Free Version

Supported Platforms

SaaS
Android
iPhone
iPad
Windows
Mac
On-Prem
Chromebook
Linux

Supported Platforms

SaaS
Android
iPhone
iPad
Windows
Mac
On-Prem
Chromebook
Linux

Customer Service / Support

Standard Support
24 Hour Support
Web-Based Support

Customer Service / Support

Standard Support
24 Hour Support
Web-Based Support

Training Options

Documentation Hub
Webinars
Online Training
On-Site Training

Training Options

Documentation Hub
Webinars
Online Training
On-Site Training

Company Facts

Organization Name

IBM

Date Founded

1911

Company Location

United States

Company Website

www.ibm.com/quantum/qiskit

Company Facts

Organization Name

Quantum Computing Simulation

Company Website

quantum-studio.net

Categories and Features

Categories and Features

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