101 research outputs found

    Quantum many-body scars : realizations and applications

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    author: Gabriele Calliari, BScMasterarbeit Universität Innsbruck 202

    Quantum many-body scars : realizations and applications

    No full text
    author: Gabriele Calliari, BScMasterarbeit Universität Innsbruck 202

    Quantum many-body scars : realizations and applications

    No full text
    author: Gabriele Calliari, BScMasterarbeit Universität Innsbruck 202

    [en] LOCAL LABORATORY

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    [pt] SIMULADOR COMPUTACIONAL (CIRCUITLAB)

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    [en] REMOTE LABORATORY VISIR

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    Profile-splitting linearized bregman iterations for trend break detection applications

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    Trend break detection is a fundamental problem that materializes in many areas of applied science, where being able to identify correctly, and in a timely manner, trend breaks in a noisy signal plays a central role in the success of the application. The linearized Bregman iterations algorithm is one of the methodologies that can solve such a problem in practical computation times with a high level of accuracy and precision. In applications such as fault detection in optical fibers, the length N of the dataset to be processed by the algorithm, however, may render the total processing time impracticable, since there is a quadratic increase on the latter with respect to N. To overcome this problem, the herewith proposed profile-splitting methodology enables blocks of data to be processed simultaneously, with significant gains in processing time and comparable performance. A thorough analysis of the efficiency of the proposed methodology stipulates optimized parameters for individual hardware units implementing the profile-splitting. These results pave the way for high performance linearized Bregman iteration algorithm hardware implementations capable of efficiently dealing with large datasets.QID/Tittel La

    [en] DISCRETE TIME CONVOLUTION

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    [pt] AULA 6: COMPUTAÇÃO DIGITAL - ENG1448

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    [pt] AULA 4: COMPUTAÇÃO DIGITAL - ENG1448

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