Christophe Caloz Explained

Christophe Caloz
Birth Date:1969 5, df=yes
Birth Place:Sierre, Valais, Switzerland
Nationality:Switzerland, France, Canada
Field:Electrical engineering, physics
Alma Mater:École Polytechnique Fédérale de Lausanne
Thesis Title:Contribution to the study of photonic crystals for microwave and millimeter-wave applications
Thesis Year:2000
Thesis Url:https://infoscience.epfl.ch/record/32716?ln=en#record-files-collapse-header

Christophe Caloz (born May 8, 1969, Sierre, Switzerland) is a researcher and professor of electrical engineering and physics at KU Leuven. He graduated from the École Polytechnique Fédérale de Lausanne in Lausanne, Switzerland, where he received a Diploma of electrical engineering in telecommunications in 1995 and a Ph.D. in electromagnetics (photonic crystals) in 2000. From 2001 to 2004, he was a Postdoctoral Research Engineer at the Microwave Electronics Laboratory of University of California at Los Angeles. He was then a professor and a Canada Research Chair at the École Polytechnique de Montréal until 2019, before joining KU Leuven where he is the director of the Meta Research Group.

Research

Caloz has done pioneering contributions to the field of electromagnetic metamaterials[1] and smart antennas[2] over the past decade.[3] [4] His most recent advances in these areas include magnetless non-reciprocal metamaterials[5] and electronically steered leaky-wave antennas for enhanced Wifi MIMO systems. In the past few years, he discovered giant Faraday rotation in graphene[6] and subsequently demonstrated novel microwave and terahertz devices. Moreover, he introduced the paradigm of Radio Analog Signal Processing (R-ASP),[7] based novel dispersive delay structures that he called "phasers", which bear great promise to next-generation wireless communication systems.

Professional activities

Caloz is a Distinguished Lecturer and AdCom Member of the IEEE Antennas and Propagation Society (AP-S) Member of the IEEE Microwave Theory and Techniques Society (MTT-S) Technical Committees MTT-15 (Microwave Field Theory) and MTT-25 (RF Nanotechnology), a Speaker of the MTT-15 Speaker Bureau, the Chair of the Commission D (Electronics and Photonics) of the Canadian Union de Radio Science Internationale (URSI) and an MTT-S representative at the IEEE Nanotechnology Council (NTC).

Honors and awards

Caloz received several awards, including the UCLA Chancellor's Award for Post-doctoral Research in 2004, the MTT-S Outstanding Young Engineer Award in 2007, the E.W.R. Steacie Memorial Fellowship in 2013, and many best paper awards with his students. He has been an IEEE Fellow since 2010 and an Optica Fellow since 2020.[8] [9] He is also in Thomson Reuters' list of Highly Cited Researchers,[10] which is composed of the 3,200 most influential scientists of the world in all disciplines.

Notes and References

  1. Book: Electromagnetic Metamaterials, Transmission Line Theory and Microwave Applications. Caloz. Christophe. Tatsuo. Itoh. 2006. Wiley and IEEE Press. 376. 978-0-471-66985-2. https://web.archive.org/web/20120316171747/http://www.wiley.com/WileyCDA/WileyTitle/productCd-0471669857.html. March 16, 2012. dead.
  2. Book: Caloz. Christophe. Jackson. David R.. Itoh. Tatsuo. Gross. Frank B.. Frontiers in Antennas: Next Generation Design and Engineering. McGraw Hill. 2011. Chapter 9: Leaky-wave Antennas.
  3. Book: Nader. Engheta. Richard W.. Ziolkowski. Electromagnetic Metamaterials: Physics and Engineering Aspects . Wiley - IEEE Press. 2006.
  4. Book: Filippo. Capolino. Metamaterials Handbook: Phenomena, Theory, and Applications. 1736. CRC Press. October 27, 2009. October 14, 2012. https://web.archive.org/web/20121014231014/http://www.crcpress.com/product/isbn/9781420053623. dead.
  5. Kodera. Toshiro. Sounas. Dimitrios L.. Caloz. Christophe. Artificial Faraday rotation using a ring metamaterial structure without static magnetic field. Appl. Phys. Lett.. 99. 3. July 2011. 031114:1–3. 10.1063/1.3615688. 2011ApPhL..99c1114K.
  6. Sounas. Dimitrios L.. Caloz. Christophe. Electromagnetic non-reciprocity and gyrotropy of graphene. Appl. Phys. Lett. . 98. 2. Jan 2011. 021911:1–3. 10.1063/1.3543633. 2011ApPhL..98b1911S.
  7. Caloz, Christophe; Gupta, Shulabh; Zhang, Qingfeng; Nikfal, Babak (Sept. 2013). "Analog signal processing". IEEE Microwave Mag. 14 (6): 97-103.
  8. Web site: Hornback. Samantha. Christophe Caloz Awards & Grants Optica. live. Optica. https://web.archive.org/web/20211218003545/https://www.optica.org/en-us/get_involved/awards_and_honors/fellow_members/fellow_profiles/christophe_caloz/ . 2021-12-18 .
  9. Web site: Recent Fellows - Awards & Grants – The Optical Society (OSA) Optica. live. https://web.archive.org/web/20211218003547/https://www.optica.org/en-us/get_involved/awards_and_honors/fellow_members/elected_fellows/2020_fellows/ . 2021-12-18 .
  10. Web site: Home . highlycited.com.