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Trabectedin plus CD13-targeted tissue factor tTF-NGR against advanced relapsed or refractory soft tissue sarcoma: translational data, clinical safety and efficacy. [PDF]
Hessling K +27 more
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SSRN Electronic Journal, 2022
This paper provides an overview of the distributed ledger technology (DLT) options available to central banks for issuing central bank digital currency (CBDC). We discuss the main requirements that a DLT solution must fulfill and analyze the various structures for implementation offered by DLT - public, permissioned and private - and the implications ...
Guo, Sky, Kreitem, Joseph, Moser, Thomas
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This paper provides an overview of the distributed ledger technology (DLT) options available to central banks for issuing central bank digital currency (CBDC). We discuss the main requirements that a DLT solution must fulfill and analyze the various structures for implementation offered by DLT - public, permissioned and private - and the implications ...
Guo, Sky, Kreitem, Joseph, Moser, Thomas
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DLT-based enhancement of cross-border payment efficiency – a legal and regulatory perspective [PDF]
Financial law and regulation have, to date, assumed that regulated activities and functions are concentrated in a single legal entity responsible and accountable for operations and compliance.
Dirk A Zetzsche +2 more
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Integrated DLT and non-DLT system design for central bank digital currency
Proceedings of the 5th International Conference on Sustainable Information Engineering and Technology, 2020Central Bank Digital Currency (CBDC) is gaining popularity due to its potential benefit. However, experiments to explore the Distributed Ledger Technology (DLT) based CBDC is mostly done in the wholesale area, not in the retail area which has more impact on the public.
Danarto Tri Sasongko, Setiadi Yazid
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Note on the Analysis of DLTS and C2-DLTS
Japanese Journal of Applied Physics, 1982The difference in the peak temperatures of DLTS and C2-DLTS is discussed with reference to the measurement of deep levels in semiconductors. The emission rate of a trap level can be accurately determined when the peak temperature observed in DLTS agrees with that in C2-DLTS. When the peak temperatures disagree, the trap depth and trap density cannot
Hajime Tomokage +2 more
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Solid State Communications, 1981
Abstract It is shown theoretically that correlation methods of deep level transient spectroscopy give results sensitive to thermal capture effects. In thermal emission studies, the apparent trap depth depends on the free-carrier concentration.
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Abstract It is shown theoretically that correlation methods of deep level transient spectroscopy give results sensitive to thermal capture effects. In thermal emission studies, the apparent trap depth depends on the free-carrier concentration.
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Application of DLTS and Laplace-DLTS to defect characterization in high-resistivity semiconductors
Physica B: Condensed Matter, 2007This paper shows that the use of conventional analytical procedures to determine defect parameters from DLTS spectra may lead to erroneous results for high-resistivity semiconductors. The effect is observed when the temperature range of a DLTS peak encompasses the temperature at which the equilibrium Fermi level intersects the energy level of defect ...
L.F. Makarenko, J.H. Evans-Freeman
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Acta Physica Academiae Scientiarum Hungaricae, 1980
A method and an apparatus used for measuring of the deep level content of semiconducting crystals are described. The investigation is based on the observation of capacitance (voltage) relaxation of diodes. The evaluation of the relaxation curve is the same as proposed first byLang [1], the so-called DLTS (deep level transient spectroscopy) method.
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A method and an apparatus used for measuring of the deep level content of semiconducting crystals are described. The investigation is based on the observation of capacitance (voltage) relaxation of diodes. The evaluation of the relaxation curve is the same as proposed first byLang [1], the so-called DLTS (deep level transient spectroscopy) method.
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Physica B: Condensed Matter, 2007
This paper recalls the events leading up to the author's 1973 discovery of Deep Level Transient Spectroscopy (DLTS). It discusses the status of junction capacitance techniques in the late 1960s and points out why the typical capacitance instrumentation of that era would not have lead the author to the DLTS discovery.
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This paper recalls the events leading up to the author's 1973 discovery of Deep Level Transient Spectroscopy (DLTS). It discusses the status of junction capacitance techniques in the late 1960s and points out why the typical capacitance instrumentation of that era would not have lead the author to the DLTS discovery.
openaire +1 more source

