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Titlebook: Quantum Computer Systems; Research for Noisy I Yongshan Ding,Frederic T. Chong Book 2020 Springer Nature Switzerland AG 2020

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Book 2020architecture of quantum computing systems. It gives a concise presentation of this new paradigm of computing from a computer systems‘ point of view without assuming any background in quantum mechanics. As such, it is divided into two parts. The first part of the book provides a gentle overview on th
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Quantum Application Designs chapter is devoted to updating the readers with recent progress and upcoming challenges in near-term algorithm design. Quantum machines will be useless, if we do not know what algorithms we can run on them. So a big part in the race to practical quantum computing is to develop algorithms that run
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Circuit Synthesis and Compilationtively small number of quantum bits and operations. Compilation tools will play a critical role in achieving these goals. The job of a quantum compiler is to translate a quantum program written in a high-level programming language into native instructions recognizable by the hardware, through a seri
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Noise Mitigation and Error Correctionctions with the environment. Quantum logic gates can have small drifts when pulses are out-of-focus or out-of-tune. Classical controls and calibrations may have a hard time keeping up in scale, speed, and power. If there were no strategies to overcome the aforementioned examples of noises, they woul
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Classical Simulation of Quantum Computationcuits on a classical computer. This is an important subject, in part because it allows us to execute a quantum program and verify its correctness even when no quantum hardware is available. It is thus an essential tool for testing and debugging quantum programs. But it also sheds light on the not-so
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