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##  17 results 

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### 2026

Fan Du, Haoning Tang, Yifan Liu, Mingjie Zhang, Beicheng Lou, Guangqi Gao, Xuyang Li, Alsyl Enriquez, Shanhui Fan, and Eric Mazur. 2026. “[Dynamic Control of Intrinsic Optical Chirality via MEMS-Integrated Photonic Crystals](/publication/dynamic-control-intrinsic-optical-chirality-mems-integrated-photonic-crystals)”. Optica, 13, Pp. 449–456. doi:10.1364/OPTICA.578880



 

 

Fan Du, Haoning Tang, Yifan Liu, Mingjie Zhang, Beicheng Lou, Guangqi Gao, Xuyang Li, Alsyl Enriquez, Shanhui Fan, and Eric Mazur. 2026. “[Dynamic Control of Intrinsic Optical Chirality via MEMS-Integrated Photonic Crystals](/publication/dynamic-control-intrinsic-optical-chirality-mems-integrated-photonic-crystals)”. Optica, 13, Pp. 449–456. doi:10.1364/OPTICA.578880



 

 

 

- add\_circle\_outline do\_not\_disturb\_on Abstract
- [ descriptionPublisher's Version](https://opg.optica.org/optica/abstract.cfm?URI=optica-13-3-449)
 
 Chiral nanophotonic structures offer unprecedented design flexibility for enhancing chiral optical responses, yet dynamic tuning of such responses remains a key challenge. Here, we demonstrate intrinsic optical chirality tunability in reconfigurable... 

 

 

- [ descriptionPublisher's Version](https://opg.optica.org/optica/abstract.cfm?URI=optica-13-3-449)
 
 

A. S. Senarath, M. Pradhan, M. Obst, H. Zandipour, K. Diaz-Granados, F. G. Kaps, J. Wetzel, R. B. Iyer, G. Carini, G. Álvarez-Pérez, R. Kowalski, R. Niemann, S. Dixit, N. Mueller, Y. Kim, O. Medlayer, T. Sochacki, M. Bockowski, U. A. Leon, A. C. Behera, C. Ragle, M. Long III, J. M. Klopf, L. M. Eng, S. C. Kehr, A. Paarmann, R. D. Schrimpf, T. G. Folland, and J. D. Caldwell. 2026. “[Infrared Investigation of Hybrid Surface-Phonon-Plasmon Polariton Modes in Doped Gallium Nitride](/publication/infrared-investigation-hybrid-surface-phonon-plasmon-polariton-modes-doped-gallium-1)”



 

 

A. S. Senarath, M. Pradhan, M. Obst, H. Zandipour, K. Diaz-Granados, F. G. Kaps, J. Wetzel, R. B. Iyer, G. Carini, G. Álvarez-Pérez, R. Kowalski, R. Niemann, S. Dixit, N. Mueller, Y. Kim, O. Medlayer, T. Sochacki, M. Bockowski, U. A. Leon, A. C. Behera, C. Ragle, M. Long III, J. M. Klopf, L. M. Eng, S. C. Kehr, A. Paarmann, R. D. Schrimpf, T. G. Folland, and J. D. Caldwell. 2026. “[Infrared Investigation of Hybrid Surface-Phonon-Plasmon Polariton Modes in Doped Gallium Nitride](/publication/infrared-investigation-hybrid-surface-phonon-plasmon-polariton-modes-doped-gallium-1)”



 

 

 

 

Maxwell J. Tolchin, Bhaveshkumar Kamaliya, Morvarid Ghorbani, Angela J. Cleri, Youngji Kim, Mingze He, Anton V. Ievlev, Nabil Bassim, Joshua D. Caldwell, and Jon-Paul Maria. 2026. “[Direct-Write Gallium-Doped CdO Metasurfaces for Mid-IR Plasmonics](/publication/direct-write-gallium-doped-cdo-metasurfaces-mid-ir-plasmonics-1)”



 

 

Maxwell J. Tolchin, Bhaveshkumar Kamaliya, Morvarid Ghorbani, Angela J. Cleri, Youngji Kim, Mingze He, Anton V. Ievlev, Nabil Bassim, Joshua D. Caldwell, and Jon-Paul Maria. 2026. “[Direct-Write Gallium-Doped CdO Metasurfaces for Mid-IR Plasmonics](/publication/direct-write-gallium-doped-cdo-metasurfaces-mid-ir-plasmonics-1)”



 

 

 

 

Maxwell J. Tolchin, Bhaveshkumar Kamaliya, Angela Cleri, Morvarid Ghorbani, Youngji Kim, Ryan W. Spangler, Amanda R. Ashby, Nabil Bassim, Joshua D. Caldwell, and Jon-Paul Maria. 2026. “[Correlative Study of Ga and He Modified Cadmium Oxide Thin Films via Raman Spectroscopy](/publication/correlative-study-ga-and-he-modified-cadmium-oxide-thin-films-raman-spectroscopy-1)”



 

 

Maxwell J. Tolchin, Bhaveshkumar Kamaliya, Angela Cleri, Morvarid Ghorbani, Youngji Kim, Ryan W. Spangler, Amanda R. Ashby, Nabil Bassim, Joshua D. Caldwell, and Jon-Paul Maria. 2026. “[Correlative Study of Ga and He Modified Cadmium Oxide Thin Films via Raman Spectroscopy](/publication/correlative-study-ga-and-he-modified-cadmium-oxide-thin-films-raman-spectroscopy-1)”



 

 

 

 

Maxwell J. Tolchin, Steven L. Frankowski, Leonard Kroko, Khalid Hattar, Miguel L. Crespillo, and Jon-Paul Maria. 2026. “[Ion Beam Engineering Thin Film Cadmium Oxide Plasmonics via Cr, In, and F Implantation](/publication/ion-beam-engineering-thin-film-cadmium-oxide-plasmonics-cr-and-f-implantation-1)”



 

 

Maxwell J. Tolchin, Steven L. Frankowski, Leonard Kroko, Khalid Hattar, Miguel L. Crespillo, and Jon-Paul Maria. 2026. “[Ion Beam Engineering Thin Film Cadmium Oxide Plasmonics via Cr, In, and F Implantation](/publication/ion-beam-engineering-thin-film-cadmium-oxide-plasmonics-cr-and-f-implantation-1)”



 

 

 

 

 



### 2025

Caleb Whittier, Travis Casagrande, Matthieu Chalifour, Kyle P. Kelley, Maxwell J. Tolchin, Mingze He, Ryan Nolen, Jon-Paul Maria, Joshua D. Caldwell, David J. Masiello, Nabil D. Bassim, and Maureen J. Lagos. 2025. “[Spatial Distribution and Sensitivity of Localized Plasmon Modes in Individual Infrared SPP ENZ Resonators Probed via EELS](/publication/spatial-distribution-and-sensitivity-localized-plasmon-modes-individual-infrared-0)”. ACS Photonics, 12, 12, Pp. 7020-7029,. doi:10.1021/acsphotonics.5c02382



 

 

Caleb Whittier, Travis Casagrande, Matthieu Chalifour, Kyle P. Kelley, Maxwell J. Tolchin, Mingze He, Ryan Nolen, Jon-Paul Maria, Joshua D. Caldwell, David J. Masiello, Nabil D. Bassim, and Maureen J. Lagos. 2025. “[Spatial Distribution and Sensitivity of Localized Plasmon Modes in Individual Infrared SPP ENZ Resonators Probed via EELS](/publication/spatial-distribution-and-sensitivity-localized-plasmon-modes-individual-infrared-0)”. ACS Photonics, 12, 12, Pp. 7020-7029,. doi:10.1021/acsphotonics.5c02382



 

 

 

- [ descriptionPublisher's Version](https://doi.org/10.1021/acsphotonics.5c02382)
 
- [ descriptionPublisher's Version](https://doi.org/10.1021/acsphotonics.5c02382)
 
 

Olivia Mello, Larissa Vertchenko, Seth Nelson, Adrien Debacq, Durdu Guney, Eric Mazur, and Michaël Lobet. 2025. “[Long-Range Quantum Entanglement in Dielectric Mu-Near-Zero Metamaterials](/publication/long-range-quantum-entanglement-dielectric-mu-near-zero-metamaterials-0)”, 14, 1, Pp. 300+. doi:10.1038/s41377-025-01994-9



 

 

Olivia Mello, Larissa Vertchenko, Seth Nelson, Adrien Debacq, Durdu Guney, Eric Mazur, and Michaël Lobet. 2025. “[Long-Range Quantum Entanglement in Dielectric Mu-Near-Zero Metamaterials](/publication/long-range-quantum-entanglement-dielectric-mu-near-zero-metamaterials-0)”, 14, 1, Pp. 300+. doi:10.1038/s41377-025-01994-9



 

 

 

- add\_circle\_outline do\_not\_disturb\_on Abstract
- [ descriptionPublisher's Version](https://doi.org/10.1038/s41377-025-01994-9)
 
 Entanglement is paramount in quantum information processing. Many quantum systems suffer from spatial decoherence in distances over a wavelength and cannot be sustained over short time periods due to dissipation. However, long range solutions are required... 

 

 

- [ descriptionPublisher's Version](https://doi.org/10.1038/s41377-025-01994-9)
 
 

Mingjie Zhang, Fan Du, Durdu Guney, Serdar Kocaman, and Eric Mazur. 2025. “[Flat-Band Photonic Waveguides](/publication/flat-band-photonic-waveguides-0)”. In CLEO 2025, Pp. SS182_4. Optica Publishing Group. doi:10.1364/CLEO_SI.2025.SS182_4



 

 

Mingjie Zhang, Fan Du, Durdu Guney, Serdar Kocaman, and Eric Mazur. 2025. “[Flat-Band Photonic Waveguides](/publication/flat-band-photonic-waveguides-0)”. In CLEO 2025, Pp. SS182_4. Optica Publishing Group. doi:10.1364/CLEO_SI.2025.SS182_4



 

 

 

- add\_circle\_outline do\_not\_disturb\_on Abstract
- [ descriptionPublisher's Version](https://opg.optica.org/abstract.cfm?URI=CLEO_SI-2025-SS182_4)
 
 We experimentally demonstrate a moiré photonic crystal waveguide, achieving adjustable flat band count and flatness by varying moiré periodicity and modulation strength. We confirm the observation of flat bands with a minimum 6-nm bandwidth. 

 

 

- [ descriptionPublisher's Version](https://opg.optica.org/abstract.cfm?URI=CLEO_SI-2025-SS182_4)
 
 

 



Barun Ghosh, Yugo Onishi, Su-Yang Xu, Hsin Lin, Liang Fu, and Arun Bansil. “[Probing Quantum Geometry through Optical Conductivity and Magnetic Circular Dichroism](/publication/probing-quantum-geometry-through-optical-conductivity-and-magnetic-circular-dichroism-0)”. Science Advances, 10, 51, Pp. eado1761+. doi:10.1126/sciadv.ado1761



 

 

Barun Ghosh, Yugo Onishi, Su-Yang Xu, Hsin Lin, Liang Fu, and Arun Bansil. “[Probing Quantum Geometry through Optical Conductivity and Magnetic Circular Dichroism](/publication/probing-quantum-geometry-through-optical-conductivity-and-magnetic-circular-dichroism-0)”. Science Advances, 10, 51, Pp. eado1761+. doi:10.1126/sciadv.ado1761



 

 

 

- add\_circle\_outline do\_not\_disturb\_on Abstract
- [ descriptionPublisher's Version](https://doi.org/10.1126/sciadv.ado1761)
 
 Probing ground-state quantum geometry and topology through optical responses is not only of fundamental interest, but it can also offer several practical advantages. Here, using first-principles calculations on thin films of the antiferromagnetic... 

 

 

- [ descriptionPublisher's Version](https://doi.org/10.1126/sciadv.ado1761)
 
 

Durdu Guney, Jon-Paul Maria, and Joshua D. Caldwell. “[Analysis of Kerr Nonlinearities in Homogeneous ENZ Materials Using a Rigorous Two-Temperature Model](/publication/analysis-kerr-nonlinearities-homogeneous-enz-materials-using-rigorous-two-temperature-1)”



 

 

Durdu Guney, Jon-Paul Maria, and Joshua D. Caldwell. “[Analysis of Kerr Nonlinearities in Homogeneous ENZ Materials Using a Rigorous Two-Temperature Model](/publication/analysis-kerr-nonlinearities-homogeneous-enz-materials-using-rigorous-two-temperature-1)”



 

 

 

 

Durdu Guney, Sahin Kaya Ozdemir, and Susanne F. Yelin. “[Single Photon Cross-Phase Shift in Homogeneous ENZ Materials](/publication/single-photon-cross-phase-shift-homogeneous-enz-materials-1)”



 

 

Durdu Guney, Sahin Kaya Ozdemir, and Susanne F. Yelin. “[Single Photon Cross-Phase Shift in Homogeneous ENZ Materials](/publication/single-photon-cross-phase-shift-homogeneous-enz-materials-1)”



 

 

 

 

Avishi Poddar, Jonas von Milczewski, Durdu Guney, and Susanne F. Yelin. “[A Phenomenological Approach to Quantize Lossy Epsilon Near-Zero Systems](/publication/phenomenological-approach-quantize-lossy-epsilon-near-zero-systems-1)”



 

 

Avishi Poddar, Jonas von Milczewski, Durdu Guney, and Susanne F. Yelin. “[A Phenomenological Approach to Quantize Lossy Epsilon Near-Zero Systems](/publication/phenomenological-approach-quantize-lossy-epsilon-near-zero-systems-1)”



 

 

 

 

 



 

 

 

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