Rectenna Solar Cells, Metal-Insulator Technology & Geometric Diodes

Optical Rectennas

Metal-Insulator Technology, Geometric Diodes, Effeciency Limits, Qunatum Theroy of Operation, Traveling Wave Decices, and More

Metal-insulator-metal diodes for optical rectennas

Geometric diodes

  • “,â€� John Stearns, and Garret Moddel, NanomaterialsÌý,Ìý11, 2361 (2021), doi.org/10.3390/nano11092361Ìý

  • “," Heng Wang, Gaurav Jayaswal, Geetanjali Deokar, John Stearns, Pedro MFJ Costa, Garret Moddel, and Atif Shamim, NanomaterialsÌý11, 1986 (2021).

  • "High Frequency Characteristics of Graphene Geometric Diodes,"ÌýJ. Stearns and G. Moddel,Ìý2020 Device Research Conference (DRC), Columbus, OH, USA, 2020, pp. 1-2,Ìýdoi: 10.1109/DRC50226.2020.9135150. Poster

  • “â€� J. Stearns and G. Moddel, Proc. SPIE 11089, Nanoengineering: Fabrication, Properties, Optics, Thin Films, and Devices XVI, 1108903 (3 September 2019); doi.org/10.1117/12.2527701.Ìý

  • ","ÌýZixuÌýZhu, Saumil Joshi, BradleyÌýPelzÌýand Garret Moddel, Ch. 33, inÌýGraphene Science Handbook: Electrical and Optical Properties, M.ÌýAliofkhazraei, N. Ali, W. I. Milne, C. S.ÌýOzkan, S.ÌýMitura, and J. L.ÌýGervasoni, editors, pp. 543–552 (CRC Press, Boca Raton, FL, 2016) DOI: 10.1201/b19642-37.

  • “High Performance Room Temperature Rectenna IR Detectors Using Graphene Geometric Diodes,â€� Z. Zhu, S. Joshi, and G. Moddel, IEEE J. Selected Topics in Quantum Electronics, 20, 3801409 (2014), DOI 10.1109/JSTQE.2014.2318276.
  • “Geometric Diodes for Optical Rectennasâ€�, Z. Zhu, S. Joshi, S. Grover, and G. Moddel, Ch. 10 inÌýRectenna Solar Cells, G. Moddel and S. Grover, editors, (Springer, New York, 2013).
  • “Graphene Geometric Diodes for Terahertz Rectennas,â€� Z. Zhu, S. Joshi, S. Grover, and G Moddel,ÌýÌýJ. Phys. D: Appl. Phys. 46, 185101 (2013).

  • “Ultrahigh Speed Graphene Diode with Reversible Polarity,â€� G. Moddel, Z. Zhu, S. Grover, and S. Joshi, Solid StateÌýCommun., 152, 1842-1845Ìý(2012).

  • “Infrared response of geometric diode rectenna solar cells,â€� S. Joshi, Z. Zhu,ÌýÌýS. Grover, and G. Moddel, IEEE Photovoltaic Specialists Conference, Austin, TX,ÌýÌýJune 3-8, 2012.

  • Brief introduction to rectenna solar cells and geometric diodes: “Solar power conversion using diodes coupled to antennas,â€� Garret Moddel,ÌýÌýZixuÌýZhu andÌýSachitÌýGrover, 6 September 2011,ÌýÌýSPIE Newsroom.

  • “Optical Rectenna Solar Cells Using Graphene Geometric Diodes,â€� Z. Zhu, S. Grover, K. Krueger, G. Moddel, IEEE Photovoltaic Specialists Conference, Seattle, WA, June 19-24, 2011, pp. 002120- 002122. Ìý

  • “Nanoscale geometric diodes for improved rectenna solar cells,â€� Z. Zhu, S. Grover, K. Krueger and G. Moddel, 5th (OSA) International Conference onÌýNanophotonics,ÌýFudanUniversity, Shanghai, China 22-26 May, 2011

  • ","ÌýÌýGarret Moddel, U.S. Patent No. 8,803,340, issued 2014 (provisional submitted July 18, 2008).

Theory of operation and efficiency limits of optical rectennas

Traveling-wave optical rectennas

Broad studies and reviews of optical rectennas

  • “Quantum Rectennas for Photovoltaics,â€�ÌýFengÌýYu, Garret Moddel and RichardÌýCorkish, Ch. 16 inÌýAdvanced Concepts in Photovoltaics, A. J.ÌýNozik, G.ÌýConibeer, and M. C Beard, editors, pp. 506-546, (Royal Society of Chemistry, Cambridge, UK, 2014) DOI:10.1039/9781849739955-00506.

  • “WillÌýRectenna Solar Cells Be Practical?â€�, G. Moddel, Ch. 1 inÌýRectenna Solar Cells, G. Moddel and S. Grover, editors, (Springer, New York, 2013).

  • “Overview of optical rectennas for solar energy harvesting,â€� invited paper,ÌýZixuÌýZhu, Saumil Joshi, BradleyÌýPelzÌýand Garret Moddel, Next Generation (Nano) Photonic and Cell Technologies for Solar Energy Conversion IV, edited by Oleg V.ÌýSulima, GavinÌýConibeer, Proc. of SPIE Vol. 8824, 88240O-1 - 88240O-11, 2013.

  • “Interconnected High Speed Electron Tunneling Devices,â€� Michael J. Estes and Garret Moddel, U.S. Patent No. 7,126,151 (2006).Ìý
  • “Terahertz Interconnect System and Applications,â€� Michael J. Estes and Garret Moddel, U.S. Patent No. 6,967,347 (2005).

  • "Macroelectronics: Perspectives on Technology and Applications, " R.ÌýReuss, with G. Moddel, et al., Proc. IEEE 93 (7), 1239-1256 (2005).

  • "Detectors at the Intersection of Photons and Electromagnetic Fields or, Where Einstein Meets Maxwell," invited paper, B. Eliasson and G. Moddel,ÌýÌýSpring Meeting of the Materials Research Society,ÌýÌýSan Francisco,ÌýÌýMarch 28-April 1,ÌýÌý2005.

  • "Terahertz device integrated antenna for use in resonant and non-resonantÌýÌýmodes and method," "Manoja D. Weiss, Blake J. Eliasson and Garret Moddel, U.S. Patent No. 6,835,949 (2004).

  • “High speed electron tunneling device and applications,â€� G. Moddel, and B. J. Eliasson, U.S. Patent No. 6,756,649,ÌýÌýissued 2004.

  • Rectenna solar cells: “Metal-oxide electron tunneling device for solar energy conversion,â€� B. J. Eliasson, and G. Moddel, U.S. Patent No. 6,534,784,ÌýÌýissued 2003.

  • “A New Technology for Terahertz Electronics: Thin-Film Devices Based on Metal-Insulator Tunnel Junctions,â€� Phiar Corporation whitepaper, 2003.

Student PhD Theses on Rectennas and MIM Diodes

Metal-insulator diode simulator

  • to our state-of-the art MATLAB-based simulator for MIM and MIIM diodes developed byÌýSachitÌýGrover.

Phiar Corporation

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