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Multi-Step Multi-Input One-Way Quantum Information Processing with Spatial and Temporal Modes of Light (2015)

Multi-Step Multi-Input One-Way Quantum Information Processing with Spatial and Temporal Modes of Light

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"Multi-Step Multi-Input One-Way Quantum Information Processing with Spatial and Temporal Modes of Light" by Ryuji Ukai is a physics book focused on Light & Optics. Best for students, educators, and scientifically curious readers.

In this thesis, the author develops for the first time an implementation methodology for arbitrary Gaussian operations using temporal-mode cluster states. The author also presents three experiments involving continuous-variable one-way quantum computations, where their non-classical nature is shown by observing entanglement at the outputs. The experimental basic structure of one-way quantum computation over two-mode input state is demonstrated by the controlled-Z gate and the optimum nonlocal gate experiments. Furthermore, the author proves that the operation can be controlled by the gain-tunable entangling gate experiment.

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Best For: Researchers and students in quantum information processing and optics.
Focus: Implementation methodology for arbitrary Gaussian operations using temporal-mode cluster states and continuous-variable one-way quantum computations.
Covers: Development of multi-step multi-input one-way quantum computations with spatial and temporal modes of light, including experimental demonstrations of entanglement.
Why It Matters: Provides foundational experimental methods for advancing continuous-variable quantum computing and processing using light modes.

"Multi-Step Multi-Input One-Way Quantum Information Processing with Spatial and Temporal Modes of Light" by Ryuji Ukai is a physics book focused on Light & Optics. Best for students, educators, and scientifically curious readers.

Topic: Light & Optics

Author: Ryuji Ukai

Who this is for:

  • Physics students
  • Science-minded readers
  • Readers building technical understanding

Why this book matters: It provides structured coverage of physics concepts in a way that supports deeper understanding and continued study.

In this thesis, the author develops for the first time an implementation methodology for arbitrary Gaussian operations using temporal-mode cluster states. The author also presents three experiments involving continuous-variable one-way quantum computations, where their non-classical nature is shown by observing entanglement at the outputs. The experimental basic structure of one-way quantum computation over two-mode input state is demonstrated by the controlled-Z gate and the optimum nonlocal gate experiments. Furthermore, the author proves that the operation can be controlled by the gain-tunable entangling gate experiment.

AuthorRyuji Ukai
PublisherSpringer
Published2014-09-11
ISBN-139784431550181
BindingHardcover
Pages351
LanguageEnglish
SubjectsScience
TopicLight & Optics
SeriesSpringer Theses

Format: Hardcover

Length: 351 pages

Language: English

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