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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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https://doi.org/10.1007/978-3-658-20642-0 scale data centers operating with sensitive information. The number of fabrication facilities for superconductive niobium-based technology is limited and the supply chain can be compromised. Integrated circuit camouflaging and logic locking are widely used in modern CMOS ICs to enhance security by
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https://doi.org/10.1007/978-3-531-94271-1 random number generators (TRNG)s. Leveraging insights from the study, we develop a regression-based machine learning approach that predicts the optimal gate parameter from qubit error specification without invoking the costly quantum-classical loop. Moreover, we propose another method by merging th
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Finanzierung von Start-up-Unternehmenand proposed a placement algorithm which comprises three main attributes, namely cell grouping, global placement, and detailed placement which aims to minimize overall placement area and congestion on switch boxes by reducing the distance between connected logic blocks and provides best legal placem
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https://doi.org/10.1007/978-3-658-20642-0larity of standard JJ cells. A novel methodology for logic locking is proposed for SFQ circuits. Mutual inductances are used to apply additional current to a subset or all of the logic gates. The additional current behaves as a secret key to access the functionality of the SFQ logic elements. ISCAS’
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Hardware Security of SFQ Circuits,larity of standard JJ cells. A novel methodology for logic locking is proposed for SFQ circuits. Mutual inductances are used to apply additional current to a subset or all of the logic gates. The additional current behaves as a secret key to access the functionality of the SFQ logic elements. ISCAS’
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substantiated with real quantum hardware.Covers multi-facete.This book provides readers with a comprehensive, state-of-the-art reference to the design automation aspects of quantum computers.  Given roadmaps calling for quantum computers with 2000 qubits in a few years, readers will benefit from the
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https://doi.org/10.1007/978-3-663-13411-4m with ., OLSQ, a more efficient formulation of the layout synthesis problem into mathematical programming. We accelerate OLSQ with the . and expand its solution space with domain-specific knowledge on applications like ., QAOA.
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