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From Wikipedia, the free encyclopedia

Licia Verde (born 14 October 1971, Venice, Italy) is an Italian cosmologist and theoretical physicist and currently ICREA[1] Professor of Physics and Astronomy at the University of Barcelona.[2] Her research interests include large-scale structure, dark matter, dark energy, inflation and the cosmic microwave background.

She received a Laurea degree in 1996 from University of Padua and a PhD in 2000 from the University of Edinburgh, working with Sabino Matarrese and Alan F. Heavens. She did postdoctoral study at Princeton University and joined the faculty of The University of Pennsylvania in 2003. From September 2007, Verde is an ICREA Professor at the ICCUB of the University of Barcelona. She was a Professor II at the University of Oslo during 2013 to 2016.[3] Verde was editor of the Physics of the Dark Universe Journal[4] and is currently deputy scientific director of the Journal of Cosmology and Astroparticle Physics.[5] As of 1 January 2019 she is the chair of the science advisory board of the arXiv.

She is known primarily for work on large-scale structure, analysis of the WMAP data and development of rigorous statistical tools to analyse surveys of the universe. She is a highly cited author.[6][7][8]

She appeared in the movie The Laws of Thermodynamics and is featured in the PBS show Closer to Truth in its 2020 season.

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Transcription

Early life and education

Licia Verde was born in Venice, Italy where she grew up. She attended the Liceo classico Marco Polo before she started her undergraduate studies at the University of Padua. She moved to the University of Edinburgh in the fall of 1994, first as an Erasmus and later as a PhD student.[citation needed]

Career

Verde was a research associate at the Dept. of Astrophysical Sciences, Princeton University during 2000 to 2003. In 2003, she joined the faculty of the Physics and Astronomy Dept. of the University of Pennsylvania[9] and remained there until the end of 2007. Since 2008, she is ICREA Professor of Cosmology at the University of Barcelona[10] in Spain. She has also held several faculty visiting positions: Visiting Scholar at the IAS in Princeton, USA (2005);[11] Visiting Senior Research Fellow at the Dept. of Astrophysical Sciences of Princeton University (2007-2009); Scientific Associate at CERN (2012-2013); Professor II of Physics and Astronomy at the University of Oslo (2013-2016) and Radcliffe Fellow at the Radcliffe Institute for Advanced Study, Harvard University (2015-2016).[12] In 2019 she was appointed chair of the science advisory board of the arXiv and in 2020 co-lead scientific editor of Journal of Cosmology and Astroparticle Physics.[5]

Honors and awards

Research

Verde analyzed a powerful but challenging statistical property of galaxy surveys related to higher-order correlations. She showed that galaxies of the Anglo Australian Two-degrees galaxy redshift survey trace the distribution of dark matter. This result indicated that the galaxy distribution can be used to study the dark matter one.[26]

After she joined the science team of the Microwave Anisotropy Probe, a NASA space mission to map the full sky at radio waves, Verde participated in analysis and interpretation of the Cosmic Microwave Background data from the WMAP satellite.[27]

Thanks to two ERC grants: Cosmological Physics with future large-scale structure surveys (Phys.LSS),[17] and Beyond Precision Cosmology: dealing with Systematic Errors (BePreSyE)[20] Verde has established a research group in physical cosmology at the University of Barcelona. Under her lead, the group has contributed to results from the Baryon Acoustic Oscillations Survey part of the Sloan Digital Sky Survey: measurements of the expansion history of the universe and the formation of cosmological structures as well as constraint on cosmological parameters describing structure and detailed composition of the cosmos.[citation needed]

The other recent direction of Verde's research is on dark energy. She has developed a model-independent way to study the Universe's expansion history and infer from there the physical properties of dark energy.[28]

See also

References

  1. ^ "ICREA". www.icrea.cat.
  2. ^ "ICCUB". icc.ub.edu.
  3. ^ "ITA University of Oslo". Archived from the original on 2 June 2016. Retrieved 17 December 2015.
  4. ^ "Physics of the Dark Universe Editorial Board" – via www.journals.elsevier.com.
  5. ^ a b "JCAP Editorial Board".
  6. ^ "Google Scholar".
  7. ^ "NASA ADS".
  8. ^ a b "Highly Cited Researchers - The Most Influential Scientific Minds". HCR. Archived from the original on 20 February 2019. Retrieved 26 May 2019.
  9. ^ "UPENN faculty". 13 April 2006.
  10. ^ "ICREA staff".
  11. ^ "IAS Scholars". 9 December 2019.
  12. ^ a b "Licia Verde". Radcliffe Institute for Advanced Study at Harvard University. 17 September 2015. Retrieved 9 June 2021.
  13. ^ Padova, Università di (5 June 2018). "Fondazione Aldo Gini". Università degli studi di Padova.
  14. ^ "Einstein, Chandra, and Fermi Fellows". cxc.harvard.edu.
  15. ^ "Niels Bohr Lecture".
  16. ^ "NASA - NASA Goddard Space Scientists Earn Prestigious NASA Honors". www.nasa.gov.
  17. ^ a b "ERC".
  18. ^ "Rosenblum Lecture".
  19. ^ "2012 Gruber Cosmology Prize Press Release | Gruber Foundation". gruber.yale.edu.
  20. ^ a b "ERC FUNDED PROJECTS". ERC: European Research Council.
  21. ^ "Medallas Narcís Monturiol". Universidades e Investigación.
  22. ^ "Breakthrough Prize – Breakthrough Prize – "The Oscars Of Science" – Celebrates Top Achievements In Physics, Life Sciences & Mathematics, Awards $22 Million In Prizes At Gala Televised Ceremony In Silicon Valley". breakthroughprize.org.
  23. ^ "Premi Nacional de Recerca".
  24. ^ "Lodewijk Woltjer Lecture".
  25. ^ "Premio Rey Jaume I".
  26. ^ Verde, Licia; Heavens, Alan F.; Percival, Will J.; Matarrese, Sabino; Baugh, Carlton M.; Bland-Hawthorn, Joss; Bridges, Terry; Cannon, Russell; Cole, Shaun; Colless, Matthew; Collins, Chris; Couch, Warrick; Dalton, Gavin; De Propris, Roberto; Driver, Simon P.; Efstathiou, George; Ellis, Richard S.; Frenk, Carlos S.; Glazebrook, Karl; Jackson, Carole; Lahav, Ofer; Lewis, Ian; Lumsden, Stuart; Maddox, Steve; Madgwick, Darren; Norberg, Peder; Peacock, John A.; Peterson, Bruce A.; Sutherland, Will; Taylor, Keith (2002), "NASA/ADS", Monthly Notices of the Royal Astronomical Society, 335 (2): 432, arXiv:astro-ph/0112161, Bibcode:2002MNRAS.335..432V, doi:10.1046/j.1365-8711.2002.05620.x, S2CID 8140735
  27. ^ Spergel, D. N.; Verde, L.; Peiris, H. V.; Komatsu, E.; Nolta, M. R.; Bennett, C. L.; Halpern, M.; Hinshaw, G.; Jarosik, N.; Kogut, A.; Limon, M.; Meyer, S. S.; Page, L.; Tucker, G. S.; Weiland, J. L.; Wollack, E.; Wright, E. L. (2003), "NASA/ADS", The Astrophysical Journal Supplement Series, 148 (1): 175–194, arXiv:astro-ph/0302209, Bibcode:2003ApJS..148..175S, doi:10.1086/377226, S2CID 10794058
  28. ^ Simon, Joan; Verde, Licia; Jimenez, Raul (2005), "NASA/ADS", Physical Review D, 71 (12): 123001, arXiv:astro-ph/0412269, Bibcode:2005PhRvD..71l3001S, doi:10.1103/PhysRevD.71.123001, S2CID 13215290

External links

This page was last edited on 26 September 2023, at 22:00
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