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10-15 July 2022 • Denver, Colorado, USA
IEEE AP-S/URSI 2022
10-15 July 2022 • Denver, Colorado, USA
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AP-S/URSI 2022 Attendee Access
Technical Program
Session TH-SP.1A
Paper TH-SP.1A.3
TH-SP.1A.3
Enhanced Deep Subwavelength Direction-of-Arrival Sensing Using Time Modulation
Tamir Zchut, Yarden Mazor, Tel-Aviv University, Israel
Session:
Time-Variant Metamaterials and Devices: Effective Properties, Dynamics and Applications
Track:
Special Sessions
Location:
Capitol Ballroom 4 (HR)
Presentation Time:
Thu, 14 Jul, 08:40 - 09:00 Denver Time (UTC -7)
Session Co-Chairs:
Yakir Hadad, Tel-Aviv University, Israel and Amir Shlivinski, Ben Gurion University of the Negev, Israel
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Discussion
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Session TH-SP.1A
TH-SP.1A.1: Time Metamaterials
Andrea Alù, CUNY Advanced Science Research Center, United States
TH-SP.1A.2: Low-complexity DoA Estimation method based on Space-Time modulated Metasurfaces
Xinyu Fang, Mengmeng Li, Juzheng Han, Dazhi Ding, Nanjing University of Science and Technology, China; Davide Ramaccia, Alessandro Toscano, Filiberto Bilotti, ROMA TRE University, Italy
TH-SP.1A.3: Enhanced Deep Subwavelength Direction-of-Arrival Sensing Using Time Modulation
Tamir Zchut, Yarden Mazor, Tel-Aviv University, Israel
TH-SP.1A.4: Nonlocal Effective Medium Theory for Time-Varying Metamaterials
Carlo Rizza, University of L'Aquila, Italy; Giuseppe Castaldi, Vincenzo Galdi, University of Sannio, Italy
TH-SP.1A.5: Temporal Medium Switching in a Cavity
Amir Shlivinski, Ben-Gurion University of the Negev, Israel; Yakir Hadad, Tel Aviv University, Israel
TH-SP.1A.6: Dispersion Characteristics of Accelerated Spacetime-Modulated Media
Amir Bahrami, Christophe Caloz, KU Leuven, Belgium
TH-SP.1A.7: Light Trapping with Self-Modulated Non-Linear Media
Dimitrios Sounas, Wayne State University, United States
TH-SP.1A.8: Simulating Space-Time Structures using Commercial Solvers
Cody Scarborough, Qianyi Chen, Anthony Grbic, University of Michigan, United States; Zhanni Wu, University of California at Berkeley, United States
TH-SP.1A.9: The Green's function above a spatiotemporally modulated wire metasurface
Michael Kreitzer, Yakir Hadad, Tel-Aviv University, Israel
TH-SP.1A.10: Penrose Super-Radiance in a Synthetically Rotating Metasurface
Hady Moussa, Andrea Alù, Advanced Research Science Center, CUNY (ASRC), United States
Resources
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