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Sergey I Bozhevolnyi

Explore the profile of Sergey I Bozhevolnyi including associated specialties, affiliations and a list of published articles. Areas
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Articles 171
Citations 1435
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Recent Articles
1.
Deng Y, Cai Z, Ding Y, Bozhevolnyi S, Ding F
Nanophotonics . 2024 Dec; 11(10):2219-2244. PMID: 39678086
The polarization of light is crucial for numerous optical applications ranging from quantum information processing to biomedical sensing due to the fundamental role of polarization as another intrinsic characteristic of...
2.
Damgaard-Carstensen C, Bozhevolnyi S
Nanophotonics . 2024 Dec; 12(14):2953-2962. PMID: 39635488
Dynamic optical metasurfaces with ultrafast temporal response, i.e., spatiotemporal optical metasurfaces, provide attractive solutions and open fascinating perspectives for modern highly integrated optics and photonics. In this work, electro-optically controlled...
3.
Yezekyan T, Thomaschewski M, Thrane P, Bozhevolnyi S
Nanophotonics . 2024 Dec; 13(18):3591-3598. PMID: 39634837
The advancement in material platforms exhibiting strong and robust electro-optic effects is crucial for further progress in developing highly efficient and miniaturized optoelectronic components with low power consumption for modern...
4.
Im Sande S, Bozhevolnyi S, Ding F
Nanophotonics . 2024 Dec; 12(8):1363-1371. PMID: 39634584
Metasurface-generated holograms have emerged as a unique platform for arbitrarily shaping the reflected/transmitted wavefronts with the advantages of subwavelength large pixel sizes and multiple information channels. However, achieving multiple holographic...
5.
Fiedler S, Morozov S, Komisar D, Ekimov E, Kulikova L, Davydov V, et al.
Nanophotonics . 2024 Dec; 12(12):2231-2237. PMID: 39634052
Impurity-vacancy centers in diamond offer a new class of robust photon sources with versatile quantum properties. While individual color centers commonly act as single-photon sources, their ensembles have been theoretically...
6.
Yezekyan T, Zenin V, Thomaschewski M, Malureanu R, Bozhevolnyi S
Nanophotonics . 2024 Dec; 12(12):2171-2177. PMID: 39634050
The demand on broadband near-infrared photodetections with high responsivity is becoming increasingly eminent; however its realization remains a significant technological challenge. Here we design, fabricate, and characterize a broadband Ge...
7.
Wang C, Meng C, Mei X, Gui L, Thrane P, Chen H, et al.
Sci Adv . 2024 Nov; 10(47):eadq6299. PMID: 39565849
Compared to conventional lasers limited to generating static modes, mode-switchable lasers equipped with adjustable optics significantly enhance the flexibility and versatility of coherent light sources. However, most current approaches to...
8.
Kan Y, Liu X, Kumar S, Kulikova L, Davydov V, Agafonov V, et al.
Sci Adv . 2024 Nov; 10(45):eadq6298. PMID: 39504362
Hybrid integration of solid-state quantum emitters (QEs) into nanophotonic structures opens enticing perspectives for exploiting multiple degrees of freedom of single-photon sources for on-chip quantum photonic applications. However, the state-of-the-art...
9.
Liu X, Kan Y, Kumar S, Kulikova L, Davydov V, Agafonov V, et al.
Nano Lett . 2024 Sep; 24(43):13867-13873. PMID: 39297742
Solid-state quantum emitters (QEs) with arbitrary direction emission and well-defined polarization are critical for scalable single-photon sources and quantum information processing. However, the design strategy for on-chip generation of off-normal...
10.
Kan Y, Liu X, Kumar S, Bozhevolnyi S
ACS Photonics . 2024 Apr; 11(4):1584-1591. PMID: 38645997
On-chip manipulation of photon emission from quantum emitters (QEs) is crucial for quantum nanophotonics and advanced optical applications. At the same time, the general design strategy is still elusive, especially...