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E-mail: mphys11@ipb.ac.rs
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Abstracts
Igor Volovich
Quantum dynamics as classical dynamics and quantum/symplectic computers
In this talk, we propose the concept of symplectic computers, which have the potential to be more powerful than quantum computers. Unlike quantum computing, which consists of a sequence of unitary transformations (gates) and projectors (measurements), symplectic computation involves a sequence of symplectic transformations and measurements. The proposal to explore symplectic computers is based on the following quantum-symplectic duality. The Schrödinger equation in its standard complex form describes the unitary evolution of a quantum system, while its real form describes the symplectic evolution of a classical mechanical system. This quantum-symplectic duality can be leveraged to enhance the capabilities of quantum and symplectic computers. In this symplectic approach, the role of a quantum bit (qubit) is taken by a symplectic bit (symbit).
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Organizer:
Institute of Physics Belgrade (University of Belgrade)
Belgrade, Serbia
Co-organizers:
Faculty of Mathematics
(University of Belgrade)
Belgrade, Serbia
Mathematical Institute
(Serbian Academy of Sciences and Arts)
Belgrade, Serbia
Serbian Academy of Nonlinear Sciences (SANS)
Belgrade, Serbia
ZOOM link for attending lectures online:
https://us06web.zoom.us/j/81395737972?pwd=kZEEjWagmat78h2FHLb4TMCsdM7ZF3.1
Meeting ID: 813 9573 7972
Passcode: 824870
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