magnetic control
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Science ◽  
2021 ◽  
Vol 374 (6575) ◽  
pp. 1555-1556
Author(s):  
Dominik M. Juraschek ◽  
Prineha Narang
Keyword(s):  

Author(s):  
Subhajit Karmakar ◽  
Ravi Varshney ◽  
Dibakar Roy Chowdhury

Abstract Optically thin metasurfaces operating at sub-skin depth thicknesses are intriguing because of its associated low plasmonic losses (compared to optically thick, beyond skin-depth metasurfaces). However, their applicability has been restricted largely because of reduced free space coupling with incident radiations resulting in limited electromagnetic responses. To overcome such limitations, we propose enhancement of effective responses (resonances) in sub-skin depth metasurfaces through incorporation of magneto-transport (Giant Magneto Resistance, GMR) concept. Here, we experimentally demonstrate dynamic magnetic modulation of structurally asymmetric metasurfaces (consisting of superlattice arrangement of thin (~ 10 nm each) magnetic (Ni)/ nonmagnetic (Al) layers) operating at terahertz (THz) domain. With increasing magnetic field (applied from 0 to 30 mT approximately, implies increasing superlattice conductivity), we observe stronger confinement of electromagnetic energy at the resonances (both in dipole and Fano modes). Therefore, this study introduces unique magnetically reconfigurable ability in Fano resonant THz metamaterials, which directly improves its performances operating in the sub-skin depth regime. Our study can be explained by spin-dependent terahertz magneto-transport phenomena in metals and can stimulate the paradigm for on-chip spin-based photonic technology enabling dynamic magnetic control over compact, sub-wavelength, sub-skin depth metadevices.


2021 ◽  
Vol 104 (6) ◽  
Author(s):  
C. E. Whittaker ◽  
D. R. Gulevich ◽  
D. Biegańska ◽  
B. Royall ◽  
E. Clarke ◽  
...  

Author(s):  
Yuqi Wei ◽  
Thiago Pereira ◽  
Marco Liserre ◽  
H. Alan Mantooth

Author(s):  
Ruyi Gan ◽  
Miao Yu ◽  
Shixu Li ◽  
Yaping Li ◽  
Biao Fang ◽  
...  
Keyword(s):  

Small ◽  
2021 ◽  
pp. 2102892
Author(s):  
Sungkyu Lee ◽  
Myeong Soo Kim ◽  
Kapil D. Patel ◽  
Hyojun Choi ◽  
Ramar Thangam ◽  
...  

2021 ◽  
Vol 15 ◽  
Author(s):  
Youjia Shao ◽  
Ashraf Fahmy ◽  
Ming Li ◽  
Chunxu Li ◽  
Wencang Zhao ◽  
...  

Magnetic control systems of micro-robots have recently blossomed as one of the most thrilling areas in the field of medical treatment. For the sake of learning how to apply relevant technologies in medical services, we systematically review pioneering works published in the past and divide magnetic control systems into three categories: stationary electromagnet control systems, permanent magnet control systems and mobile electromagnet control systems. Based on this, we ulteriorly analyze and illustrate their respective strengths and weaknesses. Furthermore, aiming at surmounting the instability of magnetic control system, we utilize SolidWorks2020 software to partially modify the SAMM system to make its final overall thickness attain 111 mm, which is capable to control and observe the motion of the micro-robot under the microscope system in an even better fashion. Ultimately, we emphasize the challenges and open problems that urgently need to be settled, and summarize the direction of development in this field, which plays a momentous role in the wide and safe application of magnetic control systems of micro-robots in clinic.


Author(s):  
Vincent Marichez ◽  
Akihiro Sato ◽  
Peter A. Dunne ◽  
Jorge Leira-Iglesias ◽  
Georges J. M. Formon ◽  
...  

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