Belita Koiller

Source: Wikipedia, the free encyclopedia.
Belita Koiller
NationalityBrazilian
EducationPhD
Alma materUniversity of California-Berkeley
Scientific career
FieldsPhysics, Condensed Matter

Belita Koiller is a Brazilian Professor of Physics at the Instituto de Física,

Condensed Matter Theorist, and has contributed to the understanding of the properties of disordered solids, particularly disordered chains and semiconductor alloys. More recently, she has been interested in quantum control of individual electron spin and charge in semiconductors, aiming at applications in quantum information and quantum computing.[2]

Career

Belita Koiller completed her PhD in theoretical Condensed Matter Physics at the

Pontificia Universidade Católica do Rio de Janeiro
. She was appointed Full Professor in 1992 and in 1994 she moved to the Physics Institute at Universidade Federal do Rio de Janeiro.

She has been elected three times as a General Councilor of the Brazilian Physical Society (SBF) for 4-year periods starting in 1993, 1999, and 2005. She served for 3 years, since 1994, as a member of the ICSU Committee on Capacity Building in Science.[3] She is a member of the Executive Committee of the International Human Rights Network of Academies and Scholarly Societies since 2005. In 2008, she became a member of the IUPAP Commission on Semiconductors.[4] In 2009, she was elected International Councilor of the American Physical Society Council, serving for two years.[5] In 2010, she was elected Fellow of The World Academy of Sciences (TWAS).[6] Since 2013, she is the vice-president of the Brazilian Physical Society.[7]

Since 2010, she has been an Associate editor of the Journal of Applied Physics.[8] She served as editor of the Brazilian Journal of Physics in 1990/1991.

She has participated in the organization of many international conferences. She chaired the

, held in Rio de Janeiro in 2008.

Research

As a PhD student, Belita Koiller investigated the electronic properties of transition-metal oxides. Later, she made contributions including the description of electron-atom collisions under laser fields, the electronic structure of disordered chains – including the renormalization group approach to local density of states, defects in alkali halides, magnetic order in potassium cyanide, hydrogen atoms and molecules under magnetic fields, magnon dynamics of disordered magnetic materials, electronic and elastic properties of semiconductor alloys, partially ordered systems, ordered and Fibonacci superlattices, theory of multiphoton transitions in crystals, random motion in networks, laser induced chaos in one dimensional systems and the Tight Binding description of shallow donors in semiconductors.

Since 2001, she has been (and still is) working largely in condensed matter applications to quantum information. Some of her results include the complex role of the valley interference in the spin coupling of pairs of donors in silicon and the mechanisms for controlling the valley degree of freedom in silicon.[9][10]

Honours

Belita Koiller received a

Women in Science. She is an International Councilor for the American Physical Society.[11]

References

  1. ^ "Belita Koiller at UFRJ". If.ufrj.br. Retrieved 2015-05-05.
  2. ^ "Belita Koiller short bio". If.ufrj.br. Archived from the original on 2016-03-04. Retrieved 2015-05-05.
  3. ^ "ICSU Past Members". Icsu.org. Archived from the original on 2013-08-05. Retrieved 2015-05-05.
  4. ^ "Members of the IUPAP Commission on Semiconductors".
  5. ^ "American Physical Society Newsletter". Aps.org. Retrieved 2015-05-05.
  6. ^ "The World Academy of Sciences". Twas.org. Retrieved 2015-05-05.
  7. ^ "Sociedade Brasileira de Física". Archived from the original on 2017-12-27. Retrieved 2015-05-06.
  8. ^ "Journal of Applied Physics Associate Editors".
  9. ^ "Belita Koiller's profile in google scholar". Retrieved 2015-05-05.
  10. ^ "Nanoscience Modelling in Rio". Sites.if.ufrj.br. Retrieved 2015-05-05.
  11. ^ Belita Koiller Archived 2011-08-06 at the Wayback Machine, APS.org, Retrieved 27 July 2016