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F. D. de Abajo, D. Basov, F. Koppens, L. Orsini, M. Ceccanti, Sebastián Castilla, Lorenzo Cavicchi, Marco Polini, P. A. Gonçalves, A. Costa, N. Peres, N. A. Mortensen, S. Bharadwaj, Z. Jacob, P. J. Schuck, A. Pasupathy, M. Delor, M. K. Liu, A. Mugarza, Pablo Merino, M. Cuxart, E. Chávez‐Ángel, Martin Švec, L. Tizei, F. Dirnberger, Hui Deng, C. Schneider, Vinod Menon, Thorsten Deilmann, Alexey Chernikov, K. Thygesen, Y. Abate, Mauricio Terrones, V. Sangwan, M. Hersam, Leo Yu, Xueqi Chen, Tony F. Heinz, P. Murthy, M. Kroner, Tomasz Smolenski, Deepankur Thureja, T. Chervy, Armando Genco, C. Trovatello, G. Cerullo, S. Dal Conte, Daniel Timmer, Antonietta De Sio, Christoph Lienau, Nianze Shang, Hao Hong, Kaihui Liu, Zhipei Sun, L. Rozema, P. Walther, Andrea Alù, A. Marini, M. Cotrufo, Raquel Queiroz, X-Y Zhu, J. Cox, Eduardo J. C. Dias, Á. Echarri, F. Iyikanat, Paul Herrmann, Nele Tornow, Sebastian Klimmer, Jan Wilhelm, G. Soavi, Zeyuan Sun, Shiwei Wu, Ying Xiong, O. Matsyshyn, Roshan Krishna Kumar, Justin C W Song, T. Bucher, A. Gorlach, S. Tsesses, I. Kaminer, J. Schwab, Florian Mangold, Harald Giessen, M. S. S'anchez, D. Efetov, T. Low, G. G'omez-Santos, T. Stauber, G. Álvarez‐Pérez, Jiahua Duan, Luis Mart'in-Moreno, A. Paarmann, Joshua D. Caldwell, Alexey Y. Nikitin, Pablo Alonso-Gonz'alez, N. S. Mueller, Valentyn Volkov, Deep Jariwala, T. Shegai, J. van de Groep, A. Boltasseva, Igor V. Bondarev, Vladimir M. Shalaev, Jeffrey Simon, C. Fruhling, Guangzhen Shen, D. Novko, Shijing Tan, Bing Wang, Hrvoje Petek, Vahagn Mkhitaryan, Renwen Yu, Alejandro Manjavacas, J. E. Ortega, Xu Cheng, Ruijuan Tian, Dong Mao, D. van Thourhout, Xuetao Gan, Q. Dai, A. Sternbach, You Zhou, Mohammad Hafezi, Dmitrii Litvinov, M. Grzeszczyk, Kostya S. Novoselov, M. Koperski, S. Papadopoulos, Lukas Novotny, L. Viti, M. S. Vitiello, Nathan D. Cottam, Benjamin T. Dewes, O. Makarovsky, A. Patané, Yihao Song, Mingyan Cai, Jiazheng Chen, D. Naveh, Houk Jang, Suji Park, Fengnian Xia, P. K. Jenke, J. Bajo, Benjamin Braun, K. S. Burch, Liuyan Zhao, Xiaodong Xu
14 6. 4. 2025.

Roadmap for Photonics with 2D Materials

Triggered by advances in atomic-layer exfoliation and growth techniques, along with the identification of a wide range of extraordinary physical properties in self-standing films consisting of one or a few atomic layers, two-dimensional (2D) materials such as graphene, transition metal dichalcogenides (TMDs), and other van der Waals (vdW) crystals now constitute a broad research field expanding in multiple directions through the combination of layer stacking and twisting, nanofabrication, surface-science methods, and integration into nanostructured environments. Photonics encompasses a multidisciplinary subset of those directions, where 2D materials contribute remarkable nonlinearities, long-lived and ultraconfined polaritons, strong excitons, topological and chiral effects, susceptibility to external stimuli, accessibility, robustness, and a completely new range of photonic materials based on layer stacking, gating, and the formation of moiré patterns. These properties are being leveraged to develop applications in electro-optical modulation, light emission and detection, imaging and metasurfaces, integrated optics, sensing, and quantum physics across a broad spectral range extending from the far-infrared to the ultraviolet, as well as enabling hybridization with spin and momentum textures of electronic band structures and magnetic degrees of freedom. The rapid expansion of photonics with 2D materials as a dynamic research arena is yielding breakthroughs, which this Roadmap summarizes while identifying challenges and opportunities for future goals and how to meet them through a wide collection of topical sections prepared by leading practitioners.


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