System And Method For Multiplexed Optical Addressing Of Atomic Memories - EP3970083

The patent EP3970083 was granted to Massachusetts Institute OF Technology on Apr 24, 2024. The application was originally filed on May 15, 2020 under application number EP20731641A. The patent is currently recorded with a legal status of "Granted And Under Opposition".

EP3970083

MASSACHUSETTS INSTITUTE OF TECHNOLOGY
Application Number
EP20731641A
Filing Date
May 15, 2020
Status
Granted And Under Opposition
Mar 22, 2024
Grant Date
Apr 24, 2024
External Links
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SCHWARZ & PARTNER PATENTANWALTEJan 24, 2025GRUBERADMISSIBLE

Patent Citations (5) New

Patent citations refer to prior patents cited during different phases such as opposition or international search.

Citation PhasePublication NumberPublication Link
OPPOSITIONUS2016161685
OPPOSITIONWO2020236574
OTHERUS2018026723
OTHERUS6332055
OTHERUS9864216

Non-Patent Literature (NPL) Citations (13) New

NPL citations refer to non-patent references such as research papers, articles, or other publications cited during examination or opposition phases.

Citation PhaseReference TextLink
OPPOSITION- Anonymous, "Electro-optic modulator", Wikipedia, (20190514), pages 1 - 4, XP093257239-
OPPOSITION- D15: US PROVISIONAL APPLICATION "MULTIPLEXED OPTICAL ADDRESSING OF ATOMIC MEMORIES"-
OPPOSITION- D16: STRUCTURE OF CLAIM 1-
OPPOSITION- Quint Stephan, "Formung von Laserlichtimpulsen für die Quanteninformationsverarbeitung mit 40Ca+", Diplomarbeit, Institut für Physik Johannes Gutenberg-Universität Mainz, (20110501), pages 1 - 94, XP093257215-
OPPOSITION- Rickert Julian, "Simultaneous and individual ion addressing for quantum information processing", Leopold-Franzens-Universität Innsbruck, (20181101), pages 1 - 89, URL: https://www.quantumoptics.at/images/publications/diploma/master_rickert.pdf, (20221109), XP055979503-
OPPOSITION- Kielpinski D. et al, "Integrated optics architecture for trapped-ion quantum information processing", Quantum Information Processing, Springer US, New York, New York, (20151123), vol. 15, no. 12, doi:10.1007/s11128-015-1162-2, ISSN 1570-0755, pages 5315 - 5338, XP036105505
OPPOSITION- T. G. Tiecke et al, "Nanophotonic quantum phase switch with a single atom", Nature, vol. 508, no. 7495, doi:10.1038/nature13188, pages 241 - 244, XP055572992
OPPOSITION- S. Debnath et al, "Demonstration of a small programmable quantum computer with atomic qubits", Nature, (20160801), vol. 536, no. 7614, doi:10.1038/nature18648, pages 63 - 66, XP055451676
OPPOSITION- Bruzewicz Colin D. et al, "Trapped-ion quantum computing: Progress and challenges", Applied Physics Reviews, American Institute of Physics, 2 Huntington Quadrangle, Melville, NY 11747, 2 Huntington Quadrangle, Melville, NY 11747 , (20190529), vol. 6, no. 2, doi:10.1063/1.5088164, XP012238166
OPPOSITION- M Saffman, "Quantum computing with atomic qubits and Rydberg interactions: progress and challenges", JOURNAL OF PHYSICS B, ATOMIC MOLECULAR AND OPTICAL PHYSICS, INSTITUTE OF PHYSICS PUBLISHING, BRISTOL, GB, GB , (20161004), vol. 49, no. 20, doi:10.1088/0953-4075/49/20/202001, ISSN 0953-4075, page 202001, XP020309686
OPPOSITION- Wang Cheng et al, "Second harmonic generation in nano-structured thin-film lithium niobate waveguides", Optics Express, Optical Society of America, US, US, (20170320), vol. 25, no. 6, doi:10.1364/OE.25.006963, ISSN 1094-4087, pages 1 - 11, XP093257224
OPPOSITION- Riccardo Marchetti et al., "Coupling strategies for silicon photonics integrated chips [Invited]", Photonics Research, (201902), vol. 7, doi:10.1364/PRJ.7.000201, page 2, XP055893568
OPPOSITION- Qi Yifan, Li Yang, "Integrated lithium niobate photonics", Nanophotonics, de Gruyter, DE, DE , (20200601), vol. 9, no. 6, doi:10.1515/nanoph-2020-0013, ISSN 2192-8606, pages 1287 - 1320, XP093042016

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