most citedMonolithic 3D integration of tantalum pentoxide photonics on arbitrary substrates

1 citations · 1 across the 4 of their papers we have counts for

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5 papers

physics.optics20251 cited

Monolithic 3D integration of tantalum pentoxide photonics on arbitrary substrates

Grant M. Brodnik, Grisha Spektor, Lindell M. Williams +6

The photonics landscape encompasses a wide scope of material platforms, each optimized for specific functionalities, yet no platform meets the demands of all current and evolving p…

physics.optics2025

Amorphous metal oxide mixtures for high-Q integrated nonlinear photonics

Alexa R. Carollo, Atasi Dan, Haixin Liu +3

Choice of material is ubiquitous in integrated photonics to design device properties, whereas changing material composition is much less common. With phase matching as an additiona…

physics.optics2025

Mixed Precision Photonic Computing with 3D Electronic-Photonic Integrated Circuits

Georgios Charalampous, Rui Chen, Mehmet Berkay On +12

We propose advancing photonic in-memory computing through three-dimensional photonic-electronic integrated circuits using phase-change materials (PCM) and AlGaAs-CMOS technology. T…

physics.optics2025

Activating high-power parametric oscillation in photonic-crystal resonators

Grant M. Brodnik, Lindell M. Williams, Haixin Liu +4

By engineering the mode spectrum of a Kerr microresonator, we selectively activate nonlinear phase matching amongst broadband parametric gain. At threshold, optical parametric osci…

physics.optics2025

Heterogeneous tantala photonic integrated circuits for sub-micron wavelength applications

Nima Nader, Eric J. Stanton, Grant M. Brodnik +8

Atomic and trapped-ion systems are the backbone of a new generation of quantum-based positioning, navigation, and timing (PNT) technologies. The miniaturization of such quantum sys…