Статті в журналах з теми "Dynamical tunability"
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Sciortino, Alice, Michela Gazzetto, Gianpiero Buscarino, Radian Popescu, Reinhard Schneider, Gaetano Giammona, Dagmar Gerthsen, et al. "Disentangling size effects and spectral inhomogeneity in carbon nanodots by ultrafast dynamical hole-burning." Nanoscale 10, no. 32 (2018): 15317–23. http://dx.doi.org/10.1039/c8nr02953a.
Повний текст джерелаWang, Zhao, and Li. "Dynamical Manipulation of Surface Plasmon Polaritons." Applied Sciences 9, no. 16 (August 11, 2019): 3297. http://dx.doi.org/10.3390/app9163297.
Повний текст джерелаShcherbinin, S. A., S. V. Ustiuzhanina та A. A. Kistanov. "Dynamical stability and electronic structure of β-phosphorus carbide nanowires". Journal of Micromechanics and Molecular Physics 05, № 03 (вересень 2020): 2050007. http://dx.doi.org/10.1142/s2424913020500071.
Повний текст джерелаHuang, G. Q., and Z. W. Xing. "Band-gap tunability and dynamical instability in strained monolayer and bilayer phosphorenes." Journal of Physics: Condensed Matter 27, no. 17 (April 2, 2015): 175006. http://dx.doi.org/10.1088/0953-8984/27/17/175006.
Повний текст джерелаBruno, Vincenzo, Stefano Vezzoli, Clayton DeVault, Thomas Roger, Marcello Ferrera, Alexandra Boltasseva, Vladimir M. Shalaev, and Daniele Faccio. "Dynamical Control of Broadband Coherent Absorption in ENZ Films." Micromachines 11, no. 1 (January 20, 2020): 110. http://dx.doi.org/10.3390/mi11010110.
Повний текст джерелаBasu, Pradosh, Barun Halder, Sriganapathy Raghav, and Utpal Roy. "Nonlinear Excitations in Ultracold Atoms Trapped in Triple Optical Lattices." Condensed Matter 7, no. 3 (September 9, 2022): 52. http://dx.doi.org/10.3390/condmat7030052.
Повний текст джерелаSciortino, Cannas, and Messina. "Temperature-Dependence of Solvent-Induced Stokes Shift and Fluorescence Tunability in Carbon Nanodots." C 5, no. 2 (April 24, 2019): 20. http://dx.doi.org/10.3390/c5020020.
Повний текст джерелаDebashis, Punyashloka, Aman K. Maskay, Pramey Upadhyaya, and Zhihong Chen. "Spin–orbit torque controlled stochastic oscillators with synchronization and frequency tunability." Journal of Applied Physics 131, no. 12 (March 28, 2022): 123901. http://dx.doi.org/10.1063/5.0077237.
Повний текст джерелаGenix, Anne-Caroline, Vera Bocharova, Bobby Carroll, Philippe Dieudonné-George, Edouard Chauveau, Alexei P. Sokolov, and Julian Oberdisse. "Influence of the Graft Length on Nanocomposite Structure and Interfacial Dynamics." Nanomaterials 13, no. 4 (February 16, 2023): 748. http://dx.doi.org/10.3390/nano13040748.
Повний текст джерелаFeng, Chun, Meiyin Yang, Kui Gong, Xujing Li, Baohe Li, Yong Jiang, and Guanghua Yu. "Dynamical mechanism for coercivity tunability in the electrically controlled FePt perpendicular films with small grain size." Journal of Applied Physics 115, no. 2 (January 14, 2014): 023906. http://dx.doi.org/10.1063/1.4861738.
Повний текст джерелаBai, Qiang. "Manifestation of the spontaneous parity-time symmetry breaking phase transition in hot-electron photodetection based on a tri-layered metamaterial." Nanophotonics 8, no. 3 (February 14, 2019): 495–504. http://dx.doi.org/10.1515/nanoph-2018-0207.
Повний текст джерелаRen, Shenqiang. "(Invited) Switching Molecular Ionic Magnetism." ECS Meeting Abstracts MA2022-02, no. 59 (October 9, 2022): 2211. http://dx.doi.org/10.1149/ma2022-02592211mtgabs.
Повний текст джерелаWang, Xuefeng, Qiqi Yang, Ronghua Huan, Zhan Shi, Weiqiu Zhu, Zhuangde Jiang, Zichen Deng, and Xueyong Wei. "Frequency comb in 1:3 internal resonance of coupled micromechanical resonators." Applied Physics Letters 120, no. 17 (April 25, 2022): 173506. http://dx.doi.org/10.1063/5.0091237.
Повний текст джерелаChen, Chun-Wei, Ting-Mao Feng, Chih-Wei Wu, Tsung-Hsien Lin, and Iam Choon Khoo. "Massive, soft, and tunable chiral photonic crystals for optical polarization manipulation and pulse modulation." Applied Physics Reviews 10, no. 1 (March 2023): 011413. http://dx.doi.org/10.1063/5.0139168.
Повний текст джерелаSingh, Ranjan, Jie Xiong, Abul K. Azad, Hao Yang, Stuart A. Trugman, Q. X. Jia, Antoinette J. Taylor, and Hou-Tong Chen. "Optical tuning and ultrafast dynamics of high-temperature superconducting terahertz metamaterials." Nanophotonics 1, no. 1 (July 1, 2012): 117–23. http://dx.doi.org/10.1515/nanoph-2012-0007.
Повний текст джерелаMitra, Srimanta, Aquil Ahmad, Shamik Chakrabarti, Sajib Biswas, and Amal Kumar Das. "Study of structural, electronic and magnetic properties of Ti doped Co2FeGe Heusler alloy: Co2Fe1−x Ti x Ge (x = 0, 0.5, and 0.75)." Journal of Physics: Condensed Matter 34, no. 3 (November 3, 2021): 035803. http://dx.doi.org/10.1088/1361-648x/ac3039.
Повний текст джерелаHARTEMANN, F. V., A. M. TREMAINE, S. G. ANDERSON, C. P. J. BARTY, S. M. BETTS, R. BOOTH, W. J. BROWN, et al. "Characterization of a bright, tunable, ultrafast Compton scattering X-ray source." Laser and Particle Beams 22, no. 3 (July 2004): 221–44. http://dx.doi.org/10.1017/s0263034604223059.
Повний текст джерелаZhou, Yinning, Zhichao Ma, and Ye Ai. "Dynamically tunable elasto-inertial particle focusing and sorting in microfluidics." Lab on a Chip 20, no. 3 (2020): 568–81. http://dx.doi.org/10.1039/c9lc01071h.
Повний текст джерелаLi, Jianfei, Jingfeng Yao, Chengxun Yuan, Ying Wang, Zhongxiang Zhou, and Jingwen Zhang. "Tunable transmission near Dirac-like point in the designed plasma photonic crystal." Physics of Plasmas 29, no. 3 (March 2022): 033505. http://dx.doi.org/10.1063/5.0079293.
Повний текст джерелаHaefner, Joseph W., Christopher T. Middlebrook, Alexander L. Adams, Charles F. Middleton, and J. Richard Desalvo. "Tunable microwave photonic transversal filter." International Journal of Microwave and Wireless Technologies 8, no. 2 (April 16, 2015): 205–13. http://dx.doi.org/10.1017/s1759078715000215.
Повний текст джерелаQuan, Zhiqiang, Houquan Liu, and Libo Yuan. "Simulation of On-Chip Broadband Photon Spin Router Base on Nondiffracting Surface Plasmon Beam Launching." Applied Sciences 11, no. 22 (November 11, 2021): 10643. http://dx.doi.org/10.3390/app112210643.
Повний текст джерелаGutiérrez, Yael, Pablo García-Fernández, Javier Junquera, April S. Brown, Fernando Moreno, and Maria Losurdo. "Polymorphic gallium for active resonance tuning in photonic nanostructures: from bulk gallium to two-dimensional (2D) gallenene." Nanophotonics 9, no. 14 (August 10, 2020): 4233–52. http://dx.doi.org/10.1515/nanoph-2020-0314.
Повний текст джерелаCao, Fengzhao, Shuai Zhang, Junhua Tong, Chao Chen, Lianze Niu, Tianrui Zhai, and Xinping Zhang. "Effects of Cavity Structure on Tuning Properties of Polymer Lasers in a Liquid Environment." Polymers 11, no. 2 (February 14, 2019): 329. http://dx.doi.org/10.3390/polym11020329.
Повний текст джерелаLiu, Chengfang, He Lin, Dongzhou Ji, Qun Yu, Shuoguo Chen, Ziming Guo, Qian Luo, Xu Liu, and Wenyong Lai. "Wavelength-tunable organic semiconductor lasers based on elastic distributed feedback gratings." Journal of Semiconductors 44, no. 3 (March 1, 2023): 032601. http://dx.doi.org/10.1088/1674-4926/44/3/032601.
Повний текст джерелаLin, Hai, Junling Han, and Xufeng Jing. "Electromagnetic radiation focusing lens based on phase transition all-dielectric microstructure." Journal of Laser Applications 35, no. 1 (February 2023): 012026. http://dx.doi.org/10.2351/7.0000956.
Повний текст джерелаLuo, Hao, Qianyi Shangguan, Yinting Yi, Shubo Cheng, Yougen Yi, and Zhizhong Li. "A Tunable “Ancient Coin”-Type Perfect Absorber with High Refractive Index Sensitivity and Good Angular Polarization Tolerance." Coatings 11, no. 7 (July 6, 2021): 814. http://dx.doi.org/10.3390/coatings11070814.
Повний текст джерелаGao, Liang, Chao Feng, Yongfu Li, Xiaohan Chen, Qingpu Wang, and Xian Zhao. "Actively Controllable Terahertz Metal–Graphene Metamaterial Based on Electromagnetically Induced Transparency Effect." Nanomaterials 12, no. 20 (October 19, 2022): 3672. http://dx.doi.org/10.3390/nano12203672.
Повний текст джерелаTahmasebi, Omid, Ali Abdolali, Hamid Rajabalipanah, Ali Momeni, and Romain Fleury. "Parallel temporal signal processing enabled by polarization-multiplexed programmable THz metasurfaces." Optics Express 30, no. 25 (November 29, 2022): 45221. http://dx.doi.org/10.1364/oe.471338.
Повний текст джерелаWei, Guoqiang, Qiuyue Nie, Zhonglin Zhang, Peiqi Chen, and Changshi Yan. "Plasma-based GHz tunable bandstop filter." Physics of Plasmas 29, no. 8 (August 2022): 083505. http://dx.doi.org/10.1063/5.0091487.
Повний текст джерелаWei, Xueling, Jie Nong, Yiyi Zhang, Hansi Ma, Rixing Huang, Zhenkun Yuan, Zhenfu Zhang, Zhenrong Zhang, and Junbo Yang. "Sb2S3-Based Dynamically Tuned Color Filter Array via Genetic Algorithm." Nanomaterials 13, no. 9 (April 24, 2023): 1452. http://dx.doi.org/10.3390/nano13091452.
Повний текст джерелаWang, Di, Jin Liu, Haima Yang, Bo Huang, and Guohui Zeng. "Research on Tunable SPR Sensors Based on WS2 and Graphene Hybrid Nanosheets." Photonics 9, no. 7 (July 12, 2022): 490. http://dx.doi.org/10.3390/photonics9070490.
Повний текст джерелаNing, Jing, Ke Chen, Wenbo Zhao, Junming Zhao, Tian Jiang, and Yijun Feng. "An Ultrathin Tunable Metamaterial Absorber for Lower Microwave Band Based on Magnetic Nanomaterial." Nanomaterials 12, no. 13 (June 21, 2022): 2135. http://dx.doi.org/10.3390/nano12132135.
Повний текст джерелаYang, Guishuang, Fengping Yan, Xuemei Du, Ting Li, Wei Wang, Yuling Lv, Hong Zhou, and Yafei Hou. "Tunable broadband terahertz metamaterial absorber based on vanadium dioxide." AIP Advances 12, no. 4 (April 1, 2022): 045219. http://dx.doi.org/10.1063/5.0082295.
Повний текст джерелаCaratenuto, Andrew, and Yi Zheng. "Piston-Type Optical Modulator for Dynamic Thermal Radiation Tuning Applications." Materials 14, no. 16 (August 4, 2021): 4372. http://dx.doi.org/10.3390/ma14164372.
Повний текст джерелаLai, Runing, Hao Chen, Zigang Zhou, Zao Yi, Bin Tang, Jing Chen, Yougen Yi, Chaojun Tang, Jianguo Zhang, and Tangyou Sun. "Design of a Penta-Band Graphene-Based Terahertz Metamaterial Absorber with Fine Sensing Performance." Micromachines 14, no. 9 (September 21, 2023): 1802. http://dx.doi.org/10.3390/mi14091802.
Повний текст джерелаChen, Fu, Yongzhi Cheng, and Hui Luo. "A Broadband Tunable Terahertz Metamaterial Absorber Based on Single-Layer Complementary Gammadion-Shaped Graphene." Materials 13, no. 4 (February 14, 2020): 860. http://dx.doi.org/10.3390/ma13040860.
Повний текст джерелаXu, Yaopengxiao, Pei-En Chen, Hechao Li, Wenxiang Xu, Yi Ren, Wanliang Shan, and Yang Jiao. "Correlation-function-based microstructure design of alloy-polymer composites for dynamic dry adhesion tuning in soft gripping." Journal of Applied Physics 131, no. 11 (March 21, 2022): 115104. http://dx.doi.org/10.1063/5.0082515.
Повний текст джерелаWang, Bo-Yun, Zi-Hao Zhu, You-Kang Gao, Qing-Dong Zeng, Yang Liu, Jun Du, Tao Wang, and Hua-Qing Yu. "Plasmon induced transparency effect based on graphene nanoribbon waveguide side-coupled with rectangle cavities system." Acta Physica Sinica 71, no. 2 (2022): 024201. http://dx.doi.org/10.7498/aps.71.20211397.
Повний текст джерелаZhang, Rui, Nitin Kumar, Jennifer L. Ross, Margaret L. Gardel, and Juan J. de Pablo. "Interplay of structure, elasticity, and dynamics in actin-based nematic materials." Proceedings of the National Academy of Sciences 115, no. 2 (December 28, 2017): E124—E133. http://dx.doi.org/10.1073/pnas.1713832115.
Повний текст джерелаGollapalli, Ravi, Jonathan Phillips, and Puneet Paul. "Ultrasensitive Surface Plasmon Resonance Sensor with a Feature of Dynamically Tunable Sensitivity and High Figure of Merit for Cancer Detection." Sensors 23, no. 12 (June 14, 2023): 5590. http://dx.doi.org/10.3390/s23125590.
Повний текст джерелаNikolaenko, Liana, Carolyn Mulroney, Peter A. Riedell, Ian W. Flinn, Jose Carlos Cruz, Rakhee Vaidya, Koen van Besien, et al. "First in Human Study of an on/Off Switchable CAR-T Cell Platform Targeting CD19 for B Cell Malignancies (CLBR001 + SWI019)." Blood 138, Supplement 1 (November 5, 2021): 2822. http://dx.doi.org/10.1182/blood-2021-151727.
Повний текст джерелаZhou, Xingfeng, Zizhao Pan, and Fusheng Ma. "Domain wall based spin torque nano-oscillator in Z-type magnetic nanowire with perpendicular magnetic anisotropy." Journal of Applied Physics 134, no. 5 (August 1, 2023). http://dx.doi.org/10.1063/5.0160400.
Повний текст джерелаYaqoob, M. Z., Munir Ahamd, A. Ghaffar, F. Razzaz, S. M. Saeed, and T. M. Alanazi. "Thermally tunable electromagnetic surface waves supported by graphene loaded indium antimonide (InSb) interface." Scientific Reports 13, no. 1 (October 30, 2023). http://dx.doi.org/10.1038/s41598-023-45475-8.
Повний текст джерелаLindsey, Rebecca K., Nir Goldman, Laurence E. Fried, and Sorin Bastea. "Chemistry-mediated Ostwald ripening in carbon-rich C/O systems at extreme conditions." Nature Communications 13, no. 1 (March 17, 2022). http://dx.doi.org/10.1038/s41467-022-29024-x.
Повний текст джерелаBarma, Shrabanti, Md Sakib Hasan Khan, Md Rafiqul Islam, and Md Tanvir Hasan. "Intralayer spatial carrier separation capability for visible light driven photocatalytic properties of SnGe2N4-layered nanostructure: A first-principles study." AIP Advances 13, no. 7 (July 1, 2023). http://dx.doi.org/10.1063/5.0160594.
Повний текст джерелаWen, Guo-Yu, Xing-Long Zhou, Xiao-Yu Tian, Rui Xie, Xiao-Jie Ju, Zhuang Liu, Yousef Faraj, Wei Wang, and Liang-Yin Chu. "Smart hydrogels with wide visible color tunability." NPG Asia Materials 14, no. 1 (April 1, 2022). http://dx.doi.org/10.1038/s41427-022-00379-3.
Повний текст джерелаBell, Douglas, Neeraj Tripathi, James Grandusky, Vibhu Jindal, and Fatemeh Shahedipour-Sandvik. "A III-nitride Layered Barrier Structure for Hyperspectral Imaging Applications." MRS Proceedings 1167 (2009). http://dx.doi.org/10.1557/proc-1167-o06-03.
Повний текст джерелаChaplain, G. J., A. S. Gliozzi, B. Davies, D. Urban, E. Descrovi, F. Bosia, and R. V. Craster. "Tunable topological edge modes in Su–Schrieffer–Heeger arrays." Applied Physics Letters 122, no. 22 (May 29, 2023). http://dx.doi.org/10.1063/5.0152172.
Повний текст джерелаWu, Jingjun, Feng Tang, Jun Ma, Bing Han, Cong Wei, Qingzhi Li, Jun Chen, et al. "Temperature-responded tunable metalenses based on phase transition materials." Chinese Physics B, November 24, 2021. http://dx.doi.org/10.1088/1674-1056/ac3cad.
Повний текст джерелаSabnis, Shruthi. "Tunable Microstrip Filters for Modern Wireless Communications." International Journal of Communication Networks and Security, January 2012, 1–5. http://dx.doi.org/10.47893/ijcns.2012.1026.
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