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- BFA Graphic Design, Painting, Printmaking, Sculpture Thesis Exhibitions11:00 am
- MFA Painting Thesis Exhibition11:00 am
- MechE Seminar Series: J. Gregory McDaniel11:00 am
- FDD Seminar: Get Unstuck: Using Design Thinking to Tackle Challenges in Academic Medicine12:00 pm
- ECE PhD Prospectus Defense Anthony Manni1:00 pm
- ECE PhD Prospectus Defense: Dilara Caygara1:00 pm
- MechE Seminar Series: Joerg G. Werner2:00 pm
- Innovator of the Year: Translating Bioengineering Discoveries into Real-World Impact3:00 pm
- [NIH/NIAID] Advancing Biomedical Careers: Strategies for successful F and K Awards10:00 am
- MechE Seminar Series: J. William Boley11:00 am
- Spring 2026 New Realities, New Responses: Conversations on Higher Education12:00 pm
- MechE Seminar Series: Emma Lejeune2:00 pm
- Starting Your Own Firm: A Practical Guide to Solo & Small Firm Success5:00 pm
- Elizabeth Keckley & Mary Lincoln: In Black & White6:00 pm
ECE PhD Prospectus Defense Anthony Manni
ECE PhD Prospectus Defense Anthony Manni
Title: Directionally Unbiased Multiports for Enhanced Interferometric Sensitivity
Presenter: Anthony Manni
Advisor: Professor Alexander Sergienko
Chair: Professor Roberto Paiella
Committee: Professor Alexander Sergienko, Professor Roberto Paiella, Professor David Simon
Google Scholar Link: https://scholar.google.com/citations?user=wz2AGsAAAAAJ&hl=en
Abstract: Optical interferometers are devices composed primarily of beam splitters and mirrors, and are widely used in many areas of photonics such as laser design, metrology, gravitational wave detection, and quantum information processing. The replacement of conventional beam splitters with directionally unbiased multiports, such as four port Grover coins, has created a new class of interferometers with enhanced sensitivity and novel readout mechanisms due to the coupled cavity dynamics established by coherent feedback. Novel quantum optical effects, such as linear optical entanglement routing, higher-dimensional two-photon interference, and rich quantum walk dynamics, can be achieved by cascading Grover coins into networks or nesting them within other interferometers. Due to the resource count required to build a Grover coin that operates in free space, applications that employ networks of the like will benefit from miniaturized components. In this work, we detail new operating conditions and applications of the Grover-Michelson interferometer, and investigate the design of on-chip Grover coins in the form of multilayer dielectric gratings (MDGs) and photonic integrated circuits (PICs). Simulation results and preliminary experimental data for integrated Grover coins are presented in this prospectus, along with future directions of this work.
| When | 1:00 pm - 3:00 pm on 5 May 2026 |
|---|---|
| Building | PHO 339 |