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His research has involved experimental and theoretical study of optical amplifiers that make use of nonlinear mixing to provide gain. These amplifiers, called fiber parametric amplifiers, can also wavelength convert signals. In addition, they can also serve as sources of entangled photons for quantum key distribution. Dr. Voss has identified theoretically and verified experimentally the fundamental limits on the performance of these devices for optical communications and quantum key distribution. He also developed ultrasensitive detection techniques for photon counting and quantum optical homodyne tomography. His research at Georgia Tech involves the development of novel and improved devices and systems for optical communications and for quantum communications.
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论文共 157 篇作者统计合作学者相似作者
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MATERIALS SCIENCE AND ENGINEERING B-ADVANCED FUNCTIONAL SOLID-STATE MATERIALS (2024): 117185
A. Perepeliuc, R. Gujrati,A. Srivastava,P. Vuong, V. Ottapilakkal,P. L. Voss,S. Sundaram,J. P. Salvestrini, A. Ougazzaden
APPLIED PHYSICS LETTERSno. 26 (2023)
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ADVANCED MATERIALS TECHNOLOGIESno. 15 (2023)
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Andre Perepeliuc,Rajat Gujrati,Ashutosh Srivastava,Phuong Vuong,Vishnu Ottapilakkal,Paul L. Voss,Suresh Sundaram, Jean-Paul Salvestrini,Abdallah Ougazzaden
Oxide-based Materials and Devices XIV (2023)
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Advanced Materials Technologiesno. 18 (2023)
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Micro and Nanostructures (2023): 207538-207538
Laure Abensur Vuillaume,Justine Frija-Masson, Meriem Hadjiat, Thomas Riquier,Marie-Pia d'Ortho,Pierrick Le Borgne,Christophe Goetz,Paul L Voss,Abdallah Ougazzaden,Jean-Paul Salvestrini,Thierry Leïchlé
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