57 citations
- Stony Brook UniversityUS6 papers
- Aston UniversityGB1 paper
- Brookhaven National LaboratoryUS1 paper
- Massachusetts Institute of TechnologyUS1 paper
- The NSF AI Institute for Artificial Intelligence and Fundamental InteractionsUS1 paper
- The University of AdelaideAU1 paper
- Tsinghua UniversityCN1 paper
- University of SaskatchewanCA1 paper
- Vehicle Technologies OfficeUS1 paper
9 papers
Long-range quantum energy teleportation and distribution on a hyperbolic quantum network
Kazuki Ikeda
Teleporting energy to remote locations is new challenge for quantum information science and technology. Developing a method for transferring local energy in laboratory systems to r…
Criticality of quantum energy teleportation at phase transition points in quantum field theory
Kazuki Ikeda
Quantum field theory can be a new medium for communication through quantum energy teleportation. We performed a demonstration of quantum energy teleportation with a relativistic fe…
Real-time non-perturbative dynamics of jet production: quantum entanglement and vacuum modification
Adrien Florio, David Frenklakh, Kazuki Ikeda +4
The production of jets should allow testing the real-time response of the QCD vacuum disturbed by the propagation of high-momentum color charges. Addressing this problem theoretica…
Demonstration of Quantum Energy Teleportation on Superconducting Quantum Hardware
Kazuki Ikeda
Teleporting physical quantities to remote locations is a remaining key challenge for quantum information science and technology. Quantum teleportation has enabled the transfer of q…
Quantum Protocol for Decision Making and Verifying Truthfulness among -quantum Parties: Solution and Extension of the Quantum Coin Flipping Game
Kazuki Ikeda, Adam Lowe
We devised a protocol that allows two parties, who may malfunction or intentionally convey incorrect information in communication through a quantum channel, to verify each other's…
Quantum Fibrations: quantum computation on an arbitrary topological space
Kazuki Ikeda
Using von Neumann algebras, we extend the theory of quantum computation on a graph to a theory of computation on an arbitrary topological space.