Time-domain Stokes phenomenon unifies temporal-boundary scattering and k-gap amplification in photonic time crystals, producing Kerr-stabilized soliton pairs whose entanglement is testable via HBT and HOM measurements.
Topological aspects of photonic time crystals
2 Pith papers cite this work, alongside 323 external citations. Polarity classification is still indexing.
2
Pith papers citing it
323
external citations · OpenAlex
fields
physics.optics 2representative citing papers
Demonstrates 2D topological phases and propagating edge states in space-time photonic crystals, including an exponentially growing edge state along the space-time interface.
citing papers explorer
-
Time domain Stokes mechanism of pair correlated k gap solitons in nonlinear photonic time crystal slabs
Time-domain Stokes phenomenon unifies temporal-boundary scattering and k-gap amplification in photonic time crystals, producing Kerr-stabilized soliton pairs whose entanglement is testable via HBT and HOM measurements.
-
2D Topological Edge States in Periodic Space-Time Interfaces
Demonstrates 2D topological phases and propagating edge states in space-time photonic crystals, including an exponentially growing edge state along the space-time interface.