The new Chinese quantum computing programming software isQ-Core is released and deployed to the cloud platform of the Chinese Academy of Science and Technology Innovation
The team of the Institute of Software of the Chinese Academy of Sciences recently released a new quantum computing programming software - isQ-Core, and successfully deployed it to the world's leading superconducting quantum hardware platform, marking an important step in the combination of quantum computing software and hardware in China. isQ-Core is jointly developed by the Institute of Software of the Chinese Academy of Sciences and the technical team of Beijing Zhongke Arc Quantum Software Technology Co., Ltd.
A bridge connecting users and hardware
In recent years, quantum computers have developed rapidly, and "Jiuzhang", "Zuchongzhi", "Zuchongzhi 2.0", etc. Similar to electronic computers, the efficient operation and use of quantum computers cannot be separated from the supporting support of software. Quantum software must meet the underlying physical principles and algorithmic logic of quantum computing, and has strong professionalism and specificity, mainly including quantum program compilers, quantum measurement and control software, etc.
Quantum software is a bridge between users and quantum computing hardware devices. The combination of quantum computing software and hardware will facilitate more people in different industries to conduct theoretical research and application exploration of quantum computing. The isQ-Core quantum programming language and its compiler have the characteristics of simplicity, ease of use, high efficiency, strong scalability, and high reliability, which can provide many conveniences for quantum computing users.
Quantum software is a bridge between users and quantum computing hardware devices. The combination of quantum computing software and hardware will facilitate more people in different industries to conduct theoretical research and application exploration of quantum computing. The isQ-Core quantum programming language and its compiler have the characteristics of simplicity, ease of use, high efficiency, strong scalability, and high reliability, which can provide many conveniences for quantum computing users.
Quantum programming software connects quantum applications and quantum hardware. Source: Institute of Software, Chinese Academy of Sciences
According to reports, in the future, isQ-Core will continue to upgrade, add and improve more functions, and develop in coordination with China's quantum computing hardware.
isQ-Core has been successfully deployed to the quantum computing cloud platform of the Institute of Quantum Information and Quantum Technology Innovation, Chinese Academy of Sciences. The platform is currently the largest quantum computing cloud platform in China. It is supported by the "Zuchongzhi" research team and will introduce the computing power of "Zuchongzhi 2.0" (66 qubits).
The construction of the quantum computing platform is completed
A quantum computing system is mainly divided into a basic layer, a development layer and an application layer. The basic layer includes hardware such as quantum chips and quantum measurement and control systems, and the development layer includes quantum compilers, quantum languages, etc. With the basic layer and development layer, you can run quantum algorithms and finally realize quantum applications.
According to Guangzihe, around the quantum chip developed by the "Zuchongzhi" research team, Quantumctek and the University of Science and Technology of China have developed the superconducting quantum computing control system ez-Q Engine, the Institute of Software of the Chinese Academy of Sciences and Arc Quantum have developed the quantum computing programming software isQ-Core, and The National University of Defense Technology and East China Normal University and other domestic and foreign teams have developed the "Qingo" quantum programming language.
So far, with the efforts of various teams, the quantum chip developed by the "Zuchongzhi" research team has completed the construction of the basic layer and the development layer, laying a solid foundation for the practical application of quantum computing.
At present, the teams of all parties are stepping up the implementation of a larger-scale software and hardware connection, which will provide a better platform for various institutions and individuals around the world to carry out quantum computing theoretical research, basic experiments and application exploration.