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  • 1
    Online Resource
    Online Resource
    New York, NY :Routledge,
    UID:
    almahu_9949383570902882
    Format: 1 online resource
    ISBN: 9780415638708 , 0415638704 , 9780429273742 , 0429273746 , 9781000013658 , 1000013650 , 9781000007121 , 100000712X , 9781000000290 , 100000029X
    Series Statement: Routledge advances in european politics
    Content: This book assesses the International Criminal Tribunal for former Yugoslavia's (ICTY) legacy and examines the conflicting intersection of law and politics in the search for justice, both thematically and through close analysis of some of the major trials. It analyses the related case brought against Serbia and Montenegro by Bosnia and Herzegovina at the International Court of Justice (ICJ), as well as the Ganic case in London where the ICTY and ICJ findings were challenged. The book addresses the following questions: To what extent the political climate in which the ICTY was conceived, and continues to operate, has affected the declared aims of its founders? Have political considerations and political correctness, and the perceived need for political stability and democratic transition, at times proved an obstacle to the administration of justice? Are some of the acknowledged failings of international policy in the 1990s finding some resonance in more recent court proceedings? This highly relevant and comprehensive book will be of interest to students and scholars of political science, international relations, transitional justice, Balkan area studies, human rights law, international criminal and peace and conflict studies.
    Additional Edition: Print version: Hodge, Carole. Balkans on trial. New York, NY : Routledge, 2019 ISBN 9780429273742
    Language: English
    Keywords: Electronic books.
    Library Location Call Number Volume/Issue/Year Availability
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  • 2
    Online Resource
    Online Resource
    KIT Scientific Publishing
    UID:
    almahu_9949498204002882
    Format: 1 electronic resource (XIV, 204 p. p.)
    ISBN: 1000007120
    Series Statement: Karlsruhe Series in Photonics & Communications / Universität Karlsruhe (TH), Institute of High-Frequency and Quantum Electronics (IHQ)
    Content: High index-contrast nanophotonic devices are key components for future board-to-board and chip-to-chip optical interconnects: The strong confinement of light enables dense integration, and nonlinear effects can be exploited at low power levels. Cheap large-scale production is possible by using highly parallel microfabrication techniques, and semiconductor-based nanophotonic devices can be integrated together with electronic circuitry on a common chip. Particularly intense research is carried out to realise optical devices on silicon substrates, using mature complementary metal-oxide-semiconductor (CMOS) fabrication techniques.This book discusses the modelling, fabrication and characterization of linear and nonlinear nanophotonic devices. Roughness-related scattering loss in high index-contrast waveguides is investigated both theoretically and experimentally, and methods of loss reduction are developed. Novel silicon-based devices for electro-optic modulation and for all-optical signal processing are presented. Nonlinear dynamics in active quantum-dot devices are studied, and resonant field enhancement is exploited to improve the efficiency of nonlinear interaction.
    Note: English
    Additional Edition: ISBN 3-86644-178-9
    Language: English
    Library Location Call Number Volume/Issue/Year Availability
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  • 3
    Online Resource
    Online Resource
    KIT Scientific Publishing
    UID:
    edoccha_9961112837902883
    Format: 1 electronic resource (XIV, 204 p. p.)
    ISBN: 1000007120
    Series Statement: Karlsruhe Series in Photonics & Communications / Universität Karlsruhe (TH), Institute of High-Frequency and Quantum Electronics (IHQ)
    Content: High index-contrast nanophotonic devices are key components for future board-to-board and chip-to-chip optical interconnects: The strong confinement of light enables dense integration, and nonlinear effects can be exploited at low power levels. Cheap large-scale production is possible by using highly parallel microfabrication techniques, and semiconductor-based nanophotonic devices can be integrated together with electronic circuitry on a common chip. Particularly intense research is carried out to realise optical devices on silicon substrates, using mature complementary metal-oxide-semiconductor (CMOS) fabrication techniques.This book discusses the modelling, fabrication and characterization of linear and nonlinear nanophotonic devices. Roughness-related scattering loss in high index-contrast waveguides is investigated both theoretically and experimentally, and methods of loss reduction are developed. Novel silicon-based devices for electro-optic modulation and for all-optical signal processing are presented. Nonlinear dynamics in active quantum-dot devices are studied, and resonant field enhancement is exploited to improve the efficiency of nonlinear interaction.
    Note: English
    Additional Edition: ISBN 3-86644-178-9
    Language: English
    Library Location Call Number Volume/Issue/Year Availability
    BibTip Others were also interested in ...
  • 4
    Online Resource
    Online Resource
    KIT Scientific Publishing
    UID:
    edocfu_9961112837902883
    Format: 1 electronic resource (XIV, 204 p. p.)
    ISBN: 1000007120
    Series Statement: Karlsruhe Series in Photonics & Communications / Universität Karlsruhe (TH), Institute of High-Frequency and Quantum Electronics (IHQ)
    Content: High index-contrast nanophotonic devices are key components for future board-to-board and chip-to-chip optical interconnects: The strong confinement of light enables dense integration, and nonlinear effects can be exploited at low power levels. Cheap large-scale production is possible by using highly parallel microfabrication techniques, and semiconductor-based nanophotonic devices can be integrated together with electronic circuitry on a common chip. Particularly intense research is carried out to realise optical devices on silicon substrates, using mature complementary metal-oxide-semiconductor (CMOS) fabrication techniques.This book discusses the modelling, fabrication and characterization of linear and nonlinear nanophotonic devices. Roughness-related scattering loss in high index-contrast waveguides is investigated both theoretically and experimentally, and methods of loss reduction are developed. Novel silicon-based devices for electro-optic modulation and for all-optical signal processing are presented. Nonlinear dynamics in active quantum-dot devices are studied, and resonant field enhancement is exploited to improve the efficiency of nonlinear interaction.
    Note: English
    Additional Edition: ISBN 3-86644-178-9
    Language: English
    Library Location Call Number Volume/Issue/Year Availability
    BibTip Others were also interested in ...
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