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Titlebook: Design Automation of Quantum Computers; Rasit O. Topaloglu Book 2023 The Editor(s) (if applicable) and The Author(s), under exclusive lice

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Book 2023lling for quantum computers with 2000 qubits in a few years, readers will benefit from the practical implementation aspects covered in this book. The authors discuss real hardware to the extent possible..Provides an up-to-date, single-source reference to design automation aspects of quantum computer
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Was ist unter Finanzierung zu verstehen?ents in many cases. In this chapter, we review the fundamentals on decision diagrams and highlight their applicability in the tasks of quantum circuit simulation with and without errors as well as in verification of quantum circuits. The tools presented here are all available online as open source projects.
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https://doi.org/10.1007/978-3-663-13411-4ed design procedure into three subroutines, each of which focuses on different hardware components and cooperates with corresponding profiling results and physical constraints. Experimental results show that our design methodology could outperform known general-purpose design schemes with better Pareto-optimal results.
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Christopher Hahn,Nino Ron Waberskize both simple and complex multi-stage logic cells with various fan-in and fan-out counts. The proposed method improves the critical margin range and parametric yield values for 6 different logic cells by 22.83% and 15.22% on average, when compared to a previously optimized open-source cell library.
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Decision Diagrams for Quantum Computing,ents in many cases. In this chapter, we review the fundamentals on decision diagrams and highlight their applicability in the tasks of quantum circuit simulation with and without errors as well as in verification of quantum circuits. The tools presented here are all available online as open source projects.
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Towards Efficient Superconducting Quantum Processor Architecture Design,ed design procedure into three subroutines, each of which focuses on different hardware components and cooperates with corresponding profiling results and physical constraints. Experimental results show that our design methodology could outperform known general-purpose design schemes with better Pareto-optimal results.
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Margin Optimization of Single Flux Quantum Logic Cells,ze both simple and complex multi-stage logic cells with various fan-in and fan-out counts. The proposed method improves the critical margin range and parametric yield values for 6 different logic cells by 22.83% and 15.22% on average, when compared to a previously optimized open-source cell library.
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