Matt Eichenfield
- Associate Professor, Optical Sciences
- Member of the Graduate Faculty
- Endowed Chair, SPIE Optical Sciences
Contact
- (520) 626-5389
- Grand Challenges Research Buil, Rm. 409
- Tucson, AZ 85719
- eichenfield@arizona.edu
Awards
- Young Faculty Award
- Defense Advanced Research Projects Agency, Winter 2023
- SPIE Endowed Chair in Optical Sciences
- Wyant College of Optical Sciences, University of Arizona, Summer 2022
Interests
No activities entered.
Courses
2024-25 Courses
-
Dissertation
OPTI 920 (Spring 2025) -
Quantum Photonic Integ Circuit
OPTI 572 (Spring 2025) -
Directed Graduate Research
OPTI 792 (Fall 2024) -
Dissertation
OPTI 920 (Fall 2024) -
Thesis
OPTI 910 (Fall 2024)
2023-24 Courses
-
Directed Graduate Research
OPTI 792 (Spring 2024) -
Dissertation
OPTI 920 (Spring 2024) -
Independent Study
PHYS 599 (Spring 2024) -
Quantum Photonic Integ Circuit
OPTI 572 (Spring 2024) -
Directed Graduate Research
OPTI 792 (Fall 2023) -
Dissertation
OPTI 920 (Fall 2023)
2022-23 Courses
-
Directed Graduate Research
OPTI 792 (Spring 2023) -
Dissertation
OPTI 920 (Spring 2023) -
Independent Study
OPTI 599 (Spring 2023) -
Special Topics in Optical Sci
OPTI 596 (Spring 2023) -
Directed Graduate Research
OPTI 792 (Fall 2022) -
Dissertation
OPTI 920 (Fall 2022) -
Independent Study
OPTI 599 (Fall 2022)
Scholarly Contributions
Journals/Publications
- Chatterjee, E., Soh, D., & Eichenfield, M. (2023). Building a Quantum Repeater Using Optomechanical Oscillators as On-Demand Entanglement Sources. Bulletin of the American Physical Society.
- Dong, M., Boyle, J. M., Palm, K. J., Zimmermann, M., Witte, A., Leenheer, A. J., Dominguez, D., Gilbert, G., Eichenfield, M., & Englund, D. (2023). Synchronous micromechanically resonant programmable photonic circuits. arXiv preprint arXiv:2306.03895.
- Dong, M., Zimmermann, M., Heim, D., Choi, H., Clark, G., Leenheer, A. J., Palm, K. J., Witte, A., Dominguez, D., Gilbert, G., & others, . (2023). Programmable photonic integrated meshes for modular generation of optical entanglement links. npj Quantum Information, 9(1), 42.
- Golter, D. A., Clark, G., El, D. T., Krastanov, S., Leenheer, A. J., Wan, N. H., Raniwala, H., Zimmermann, M., Dong, M., Chen, K. C., & others, . (2023). Selective and Scalable Control of Spin Quantum Memories in a Photonic Circuit. Nano Letters, 23(17), 7852--7858.
- Hackett, L., Du, X., Miller, M., Smith, B., Santillan, S., Montoya, J., Reyna, R., Arterburn, S., Weatherrend, S., Friedmann, T. A., & others, . (2023). S-band acoustoelectric amplifier utilizing an ultra-high thermal conductivity heterostructure for low self-heating. arXiv preprint arXiv:2309.15725.
- Hackett, L., Koppa, M., Smith, B., Miller, M., Santillan, S., Weatherred, S., Arterburn, S., Friedmann, T. A., Otterstrom, N., & Eichenfield, M. (2023). High-Efficiency Three-Wave and Four-Wave Phonon Mixing Via Electron-Mediated Nonlinearity in Semiconductor-Piezoelectric Heterostructures. arXiv preprint arXiv:2305.01600.
- Hackett, L., Miller, M., Beaucejour, R., Nordquist, C. M., Taylor, J. C., Santillan, S., Olsson, R. H., & Eichenfield, M. (2023).
Aluminum scandium nitride films for piezoelectric transduction into silicon at gigahertz frequencies
. Applied Physics Letters, 123(7). doi:10.1063/5.0151434 - Hackett, L., Miller, M., Weatherred, S., Arterburn, S., Storey, M. J., Peake, G., Dominguez, D., Finnegan, P. S., Friedmann, T. A., & Eichenfield, M. (2023). Non-reciprocal acoustoelectric microwave amplifiers with net gain and low noise in continuous operation. Nature Electronics, 6(1), 76--85.
- Kindel, W., Skinner-Ramos, S., Miller, M., Hackett, L., Nordquist, C., Smith, B., Harris, C. T., Lewis, R., & Eichenfield, M. (2023). Superconducting qubits for phononic integration. Bulletin of the American Physical Society.
- Larocque, H., Dong, M., Leenheer, A., Gilbert, G., Eichenfield, M., & Englund, D. (2023). Piezoelectric Programmable Optical Mode Conversion in a Photonic Integrated Circuit.
- Menssen, A. J., Hermans, A., Christen, I., Propson, T., Li, C., Leenheer, A. J., Zimmermann, M., Dong, M., Larocque, H., Raniwala, H., & others, . (2023). Scalable photonic integrated circuits for high-fidelity light control. Optica, 10(10), 1366--1372.
- Otterstrom, N. T., Storey, M. J., Behunin, R. O., Hackett, L., Rakich, P. T., & Eichenfield, M. (2023). Modulation of Brillouin optomechanical interactions via acoustoelectric phonon-electron coupling. Physical Review Applied, 19(1), 014059.
- Palm, K. J., Dong, M., Golter, D. A., Clark, G., Zimmermann, M., Chen, K. C., Li, L., Menssen, A., Leenheer, A. J., Dominguez, D., & others, . (2023). Modular chip-integrated photonic control of artificial atoms in diamond waveguides. Optica, 10(5), 634--641.
- Raniwala, H., Krastanov, S., Hackett, L., Eichenfield, M., Englund, D. R., & Trusheim, M. E. (2023). Piezoelectric Nanocavity Interface for Strong Coupling between a Superconducting Circuit, Phonon, and Spin. Physical Review Applied, 19(6), 064051.
- Wen, Y. H., Heim, D., Zimmermann, M., Shugayev, R. A., Dong, M., Leenheer, A. J., Gilbert, G., Eichenfield, M., Heuck, M., & Englund, D. R. (2023). High-speed photonic crystal modulator with non-volatile memory via structurally-engineered strain concentration in a piezo-MEMS platform. arXiv preprint arXiv:2310.07798.
- Zhou, Y., Ruesink, F., Pavlovich, M., Behunin, R., Cheng, H., Gertler, S., Starbuck, A. L., Leenheer, A. J., Pomerene, A. T., Trotter, D. C., & others, . (2023). Electrically interfaced Brillouin-active waveguide for multi-domain transduction. arXiv preprint arXiv:2307.07875.
Proceedings Publications
- Dong, M., Boyle, J. M., Palm, K. J., Zimmermann, M., Witte, A., Leenheer, A. J., Dominguez, D., Gilbert, G., Eichenfield, M., & Englund, D. (2023). Resonantly driven piezoelectric MEMS for programmable photonic circuits. In Frontiers in Optics.
- Eichenfield, M. (2023). Scalable photonic integrated circuits for quantum information applications. In Quantum Computing, Communication, and Simulation III.
- Golter, D. A., Greenspon, A. S., Clark, G., Chen, K., Li, L., Zimmermann, M., Leenheer, A. J., Eichenfield, M., Gilbert, G., & Englund, D. R. (2023). Coherent Microwave Control of a Diamond Tin-Vacancy Spin in a Scalable Platform. In Frontiers in Optics.
- Palm, K. J., Dong, M., Golter, D. A., Clark, G., Zimmermann, M., Chen, K. C., Li, L., Menssen, A., Leenheer, A. J., Dominguez, D., & others, . (2023). Modular free-space architecture for photonic addressing and collection of artificial atoms in diamond. In Frontiers in Optics.
- Saha, M., Greenspon, A. S., Wen, Y. H., Zimmermann, M., Leenheer, A. J., Dong, M., Clark, G., Gilbert, G., Eichenfield, M., & Englund, D. R. (2023). High-speed off-chip beam steering via photonic integrated waveguides embedded on vertical ski-jump cantilevers. In Frontiers in Optics.
- Shugayev, R., & Eichenfield, M. (2023). Complex angle isofrequency opening and reciprocity breaking in the refractive dual interface system. In Frontiers in Optics.
- Talcott, G. M., Leenheer, A. J., Starbuck, A., Musick, K., Pomerene, A., Dallo, C., Trotter, D. C., Madaras, S., Gehl, M., Lentine, A. L., & others, . (2023). Piezo-optomechanical Control of Silicon Photonic Resonator with CMOS Compatibility. In CLEO: Science and Innovations.
- Wen, Y. H., Boyle, J., Zimmermann, M., Leenheer, A. J., Shugayev, R., Dong, M., Clark, G., Gilbert, G., Eichenfield, M., & Englund, D. R. (2023). Tunable Directional Couplers in a Scalable Piezo-MEMS Platform. In Frontiers in Optics.
- Wen, Y. H., Shugayev, R., Heim, D., Leenheer, A. J., Dong, M., Gilbert, G., Eichenfield, M., Heuck, M., & Englund, D. R. (2023). Nonvolatile Opto-Mechanical Memory in a Fast Switch via Buckling-based Multi-Stability. In Frontiers in Optics.
- Zhou, Y., Ruesink, F., Gertler, S., Cheng, H., Pavlovich, M., Starbuck, A. L., Leenheer, A. J., Pomerene, A. T., Trotter, D. C., Dallo, C., & others, . (2023). Intermodal strong coupling and wideband, low-loss isolation in silicon. In CLEO: Science and Innovations.
- Zimmermann, M., Wen, Y. H., Dong, M., Leenheer, A. J., Gilbert, G., Eichenfield, M., Heuck, M., & Englund, D. R. (2023). Arbitrary Waveforms from a Resonant Modulator via Coherent Pre-Compensation. In Frontiers in Optics.