From the 1 of 9 linked papers with an AI index.
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Chiral Nonlinear Optics and Optical Control
Cedric Dufresne, Annabelle Makowski, Nir Rotenberg
Chiral light-matter interactions lie at the heart of emerging technologies such as quantum network protocols and quantum logic gates. In the few photon regime, it has been shown th…
Multicolor nonlinear chiral quantum optics: beyond phase
Cedric Dufresne, Annabelle Makowski, Nir Rotenberg
Chiral quantum nonlinearities that arise when light interacts with quantum emitters are known to modulate only the phase but not the amplitude of scattered photons, enabling the cr…
Directional telecom photons from a chirally coupled quantum dot
Kristina Bodiroga, Jacob Ewaniuk, Andrew N. Wakileh +8
Chiral quantum light-matter interfaces, where the internal spin state of a quantum emitter determines the direction in which it emits, are essential building blocks of non-reciproc…
Quantum photonic neural networks in time
Ivanna M. Boras Vazquez, Jacob Ewaniuk, Nir Rotenberg
We introduce the architecture and timing algorithm to realize a time-bin-encoded quantum photonic neural network (QPNN): a reconfigurable nonlinear photonic circuit inspired by the…
Large-Scale Tree-Type Photonic Cluster State Generation with Recurrent Quantum Photonic Neural Networks
Jacob Ewaniuk, Bhavin J. Shastri, Nir Rotenberg
Large, multi-dimensional clusters of entangled photons are among the most powerful resources for emerging quantum technologies, as they are predicted to enable global quantum netwo…
Approaching transform-limited linewidths in telecom-wavelength transitions of ungated quantum dots
Andrew N. Wakileh, Dan Dalacu, Philip J. Poole +4
Highly coherent quantum emitters operating in the telecommunication C-band (1530 - 1565nm), where ultra-low-loss fibers and photonic circuits are available, are crucial to the deve…