Quantum Foundations: Relativity, Gravity, and Geometry
ORAL · MAR-S35 · ID: 3108769
Presentations
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Separating a particle's mass from its momentum
ORAL
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Publication: https://arxiv.org/abs/2401.10408
Presenters
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Mordecai J Waegell
- Chapman University
Authors
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Mordecai J Waegell
- Chapman University
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Jeff Tollaksen
- Chapman University
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Yakir Aharonov
- Tel Aviv University
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Interacting quantum fields from quantum cellular automata
ORAL
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Presenters
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Todd A Brun
- University of Southern California
Authors
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Todd A Brun
- University of Southern California
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Leonard Mlodinow
- South Pasadena
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Quantum foundations are incomplete without holography in the background space-time: Probing the ground state of gravitational entanglement
ORAL
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Presenters
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Ohkyung Kwon
- University of Chicago
Authors
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Ohkyung Kwon
- University of Chicago
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Nikitha Kuntimaddi
- Cardiff University
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Abhinav Patra
- Cardiff University
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Alasdair L James
- Caltech
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Sander M Vermeulen
- Caltech
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Lorenzo Aiello
- University of Rome Tor Vergata
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Aldo Ejlli
- Max Planck Institute for Gravitational Physics (AEI)
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Craig J Hogan
- University of Chicago
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Robert H Hadfield
- University of Glasgow
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Karim P. Y Thébault
- University of Bristol
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Katherine L Dooley
- Cardiff University
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Keiko Kokeyama
- Cardiff University
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Hartmut Grote
- Cardiff University
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A non-relativistic theory of quantum mechanics and gravity and its application to the quantum measurement problem
ORAL
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Publication: The theory part is described in arXiv:2008.07749v1
An updated version will be put on arXiv and submitted for journal publication soon.Presenters
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Tao Zhou
- New Jersey Institute of Technology
Authors
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Tao Zhou
- New Jersey Institute of Technology
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Abstract Withdrawn
COFFEE_KLATCH · Withdrawn
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Quantizing the Cotangent Bundle and the Development of Quantum Mechanics in Curved Spaces
ORAL
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Publication: Nowaskie, G. Operator Space Manifold Theory: Modeling Quantum Operators with a Riemannian Manifold. Int J Theor Phys 63, 41 (2024)
Nowaskie, G. The Half-Transform Ansatz: Quarkonium Dynamics in Quantum Phase Space Representation. Int J Theor Phys 62, 186 (2023).
Nowaskie, G. Quantizing the Cotangent Bundle and the Development of Quantum Mechanics in Curved Spaces (submitted)Presenters
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Gabriel Nowaskie
- Western Kentucky University
Authors
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Gabriel Nowaskie
- Western Kentucky University
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Relativistic Locality from Electromagnetism to Quantum Field Theory
ORAL
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Presenters
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Charles T Sebens
- Caltech
Authors
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Charles T Sebens
- Caltech
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Eugene Chua
- Nanyang Technological University
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Abstract Withdrawn
ORAL · Withdrawn
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What is the most general (ideal) quantum coordinate transformation?
ORAL
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Presenters
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Manuel Mekonnen
- IQOQI Vienna
Authors
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Manuel Mekonnen
- IQOQI Vienna
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Markus P Müller
- IQOQI Vienna
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Delayed Choice Lorentz Transformations on a Qubit
ORAL
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Presenters
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Lucas Burns
- Chapman University
Authors
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Lucas Burns
- Chapman University
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Justin Dressel
- Chapman University
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Quantum Pseudoentanglment In AdS/CFT
ORAL
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Publication: Preprint Paper: Quantum Pseudoentanglment In AdS/CFT
Presenters
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Murtaza Jafry
- University of Chicago
Authors
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Murtaza Jafry
- University of Chicago
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Signature of criticality in angular momentum resolved entanglement of scalar fields in $d>1$
ORAL
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Publication: [1] M. K. Sarkar, S. Moitra, and R. Sensarma, Signature of criticality in angular momentum resolved entanglement
of scalar fields in d > 1, Phys. Rev. B 110, 075128 (2024).Presenters
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Mrinal Kanti Sarkar
- Tata Institute of Fundamental Research (TIFR)
Authors
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Mrinal Kanti Sarkar
- Tata Institute of Fundamental Research (TIFR)
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Saranyo Moitra
- Tata Institute of Fundamental Research (TIFR)
- Leipzig University
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Rajdeep Sensarma
- Tata Inst of Fundamental Res
- Tata Institute of Fundamental Research
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Limitations in the Quantum Operations to Achieve the Envariance Symmetry in Bipartite System
ORAL
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Presenters
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Akira Sone
- University of Massachusetts Boston
- University of Massachusetts Boston; The NSF AI Institute for Artificial Intelligence and Fundamental Interactions
Authors
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Akira Sone
- University of Massachusetts Boston
- University of Massachusetts Boston; The NSF AI Institute for Artificial Intelligence and Fundamental Interactions
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Kenji Maeda
- University of Massachusetts Boston
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Akram Touil
- Los Alamos National Laboratory
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Paola Cappellaro
- Massachusetts Institute of Technology
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Sebastian Deffner
- University of Maryland Baltimore County
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Plasma-like description for quantum particles
ORAL
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Publication: A. Akhmeteli. One real function instead of the Dirac spinor function. J. Math. Phys., 52:082303, 2011.
A. Akhmeteli. No drama quantum electrodynamics? Eur. Phys. J. C, 73:2371, 2013.
A. Akhmeteli. Plasma-like description for elementary and composite quantum particles. Entropy, 24(2):261, 2022.
A. Akhmeteli. Some Classical Models of Particles and Quantum Gauge Theories. Quantum Reports, 4(4):486–508, 2022.
A. Akhmeteli. The Dirac equation as a linear tensor equation for one component. Eur. Phys. J. C, 84:488, 2024.Presenters
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Andrey Akhmeteli
- LTASolid Inc.
Authors
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Andrey Akhmeteli
- LTASolid Inc.
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