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{{short description|Indian physicist}} | {{short description|Indian physicist}} | ||
{{Use American English|date=November 2020}} | {{Use American English|date=November 2020}} | ||
{{Use dmy dates|date=September 2020}} | {{Use dmy dates|date=September 2020}} | ||
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| caption = | | caption = | ||
| image_size = | | image_size = | ||
| birth_date = {{birth date | | birth_date = {{birth date|1952|10|20|df=yes}} | ||
| birth_place = [[Fatehpur, Kaithal]], [[India]] | | birth_place = [[Fatehpur, Kaithal]], [[India]] | ||
| death_date = {{nowrap|{{death date and age|2023|10|10|1952|10|20|df=yes}}}} | |||
| death_place = [[Melbourne, Victoria]], [[Australia]] | |||
| mother tongue = | | mother tongue = | ||
| field = [[Theoretical Physics]] (Mass Dimension One Fermions) | | field = [[Theoretical Physics]] (Mass Dimension One Fermions) | ||
| alma_mater = [[Texas A&M University]] ([[Master of Science|M.S.]], [[Doctor of Philosophy|Ph.D.]]),<br>[[State University of New York at Buffalo|M.A]], [[University of Delhi|B.Sc]] | | alma_mater = [[Texas A&M University]] ([[Master of Science|M.S.]], [[Doctor of Philosophy|Ph.D.]]),<br />[[State University of New York at Buffalo|M.A]], [[University of Delhi|B.Sc]] | ||
| workplaces = [[Los Alamos National Laboratory]]<br>[[University of Zacatecas]]<br>[[University of Canterbury]]<br>[[Jet Propulsion Laboratory]] | | workplaces = [[Los Alamos National Laboratory]]<br />[[University of Zacatecas]]<br />[[University of Canterbury]]<br />[[Jet Propulsion Laboratory]] | ||
| doctoral_advisor = | | doctoral_advisor = | ||
| known_for = Mass Dimension One Fermions<br>neutrino mixing matrix<br>gravitationally induced phases <br> non-commutative spacetime | | known_for = Mass Dimension One Fermions<br />neutrino mixing matrix<br />gravitationally induced phases <br /> non-commutative spacetime | ||
| awards = GRF First Prize<br>GRF Fourth Prize<br>GRF Fifth Prize<br>GRF Third Prize | | awards = GRF First Prize<br />GRF Fourth Prize<br />GRF Fifth Prize<br />GRF Third Prize | ||
| footnotes = | | footnotes = | ||
| homepage = | | homepage = | ||
|doctoral_students = | |doctoral_students = | ||
}} | }} | ||
'''Dharam Vir Ahluwalia'''<ref>{{cite web|url=https://scholar.google.com/citations?user=DlMc5CYAAAAJ&hl=en|title=Google Scholar}}</ref> (born October 20, 1952 in [[Fatehpur, Kaithal]], [[India]]) | '''Dharam Vir Ahluwalia'''<ref>{{cite web|url=https://scholar.google.com/citations?user=DlMc5CYAAAAJ&hl=en|title=Google Scholar}}</ref> (born October 20, 1952, in [[Fatehpur, Kaithal]], [[India]]) was an Indian-born American [[theoretical physicist]] who made significant contributions to [[physics]] of [[neutrino oscillations]], gravitationally induced phases, interface of the gravitational and quantum realms, and mass dimension one [[fermions]].<ref>{{cite journal|url=https://link.springer.com/article/10.1007/s00006-017-0775-1|title=The Theory of Local Mass Dimension One Fermions of Spin One Half|year=2017|doi=10.1007/s00006-017-0775-1|last1=Ahluwalia|first1=Dharam Vir|journal=Advances in Applied Clifford Algebras|volume=27|issue=3|pages=2247–2285|arxiv=1601.03188|s2cid=119178214}}</ref><ref>{{cite web|url=https://www.researchgate.net/profile/Dharam_Ahluwalia|title=ResearchGate Profile}}</ref> In 2019 he published ''Mass Dimension One Fermions'' .<ref>{{cite book|url=https://www.cambridge.org/core/books/mass-dimension-one-fermions/2D86BE9225EF9E2B6B5E4D513189A939|title=Cambridge Monographs on Mathematical Physics (Cambridge University Press, July 2019), Cambridge Monographs on Mathematical Physics (Cambridge University Press, July 2019)|year=2019 |doi=10.1017/9781316145593 |last1=Ahluwalia |first1=Dharam |arxiv=2007.15098 |isbn=978-1-316-14559-3 |s2cid=197482983 }}</ref> | ||
== Early life and education == | == Early life and education == | ||
Dharam Vir was born in India. He | Dharam Vir was born in India. He was a [[US citizen]] and a permanent resident of [[New Zealand]].<ref name="Orchid">{{cite web|url= https://orcid.org/0000-0002-6331-6243|title= Dharam Vir Ahluwalia|access-date= 27 June 2023|last=Ahluwalia|first=Dharam Vir|work= orcid.org|date= 23 June 2023|archive-url= https://archive.today/20230627131928/https://orcid.org/0000-0002-6331-6243|archive-date= 27 June 2023|url-status= live}}</ref> | ||
In 1991, he obtained a Ph.D. from [[Texas A&M University]]. During 1992 to 1998 he was at the [[Los Alamos National Laboratory]] as a director's postdoctoral fellow and later as a scientist/consultant. From 1998 to 2006 he was a professor of mathematics at the [[Autonomous University of Zacatecas]] in Mexico. For the period 2006-2013 he served as a senior lecturer in physics at the [[University of Canterbury]] in [[Christchurch, New Zealand]], and afterwards he was a visiting professor at numerous other institutes and universities.<ref name="Orchid"/> | In 1991, he obtained a Ph.D. from [[Texas A&M University]]. During 1992 to 1998 he was at the [[Los Alamos National Laboratory]] as a director's postdoctoral fellow and later as a scientist/consultant. From 1998 to 2006 he was a professor of mathematics at the [[Autonomous University of Zacatecas]] in Mexico. For the period 2006-2013 he served as a senior lecturer in physics at the [[University of Canterbury]] in [[Christchurch, New Zealand]], and afterwards he was a visiting professor at numerous other institutes and universities.<ref name="Orchid"/> | ||
== Awards and editorships == | == Awards and editorships == | ||
He | He was recipient of a [[Gravity Research Foundation]] First Prize (1996, jointly with Christoph Burgard),<ref>{{cite web|url=https://www.gravityresearchfoundation.org/s/1996abstracts.pdf|title=First Prize}}</ref> Fourth Prize (1997),<ref>{{cite web|url=https://www.gravityresearchfoundation.org/s/1997abstracts.pdf|title=Fourth Prize}}</ref> Third Prize (2004),<ref>{{cite web|url=https://www.gravityresearchfoundation.org/s/2004abstracts.pdf|title=Third Prize}}</ref> and Fifth Prize<ref>{{cite web|url=https://www.gravityresearchfoundation.org/s/2000abstracts.pdf|title=Fifth Prize}}</ref> (2000), with Gilma Adunas, E. Rodriguez-Milla. | ||
He | He was on the editorial boards of [[Modern Physics Letters A]],<ref>{{cite web|url=https://www.worldscientific.com/page/mpla/editorial-board|title= Modern Physics Letters A}}</ref> the [[International Journal of Modern Physics A]]<ref>{{cite web|url=https://www.worldscientific.com/page/ijmpa/editorial-board|title=International Journal of Modern Physics A}}</ref> and the [[International Journal of Modern Physics D]].<ref>{{cite web|url=https://www.worldscientific.com/page/ijmpd/editorial-board|title=International Journal of Modern Physics D}}</ref> | ||
== Selected publications == | == Selected publications == | ||
*Mass Dimension One Fermions (Cambridge Monographs on Mathematical Physics, Cambridge University Press, July 2019).<ref>{{cite book |doi=10.1017/9781316145593 |title=Mass Dimension One Fermions |year=2019 |last1=Ahluwalia |first1=Dharam |s2cid=197482983 |arxiv=2007.15098 |isbn= | *Mass Dimension One Fermions (Cambridge Monographs on Mathematical Physics, Cambridge University Press, July 2019).<ref>{{cite book |doi=10.1017/9781316145593 |title=Mass Dimension One Fermions |year=2019 |last1=Ahluwalia |first1=Dharam |s2cid=197482983 |arxiv=2007.15098 |bibcode=2019mdof.book.....A |isbn=978-1-316-14559-3 }}</ref> | ||
*A new class of mass dimension one fermions.<ref>{{cite journal | doi=10.1098/rspa.2020.0249 | title = A new class of mass dimension one fermions | last=Ahluwalia | first = D. V. | journal = Proc. R. Soc. A | volume = 476 | | *A new class of mass dimension one fermions.<ref>{{cite journal | doi=10.1098/rspa.2020.0249 | title = A new class of mass dimension one fermions | last=Ahluwalia | first = D. V. | journal = Proc. R. Soc. A | volume = 476 | article-number = 20200249 | year = 2020| issue = 2240 | arxiv = 2008.01525 | bibcode = 2020RSPSA.47600249V | s2cid = 220961416 }}</ref> | ||
*Spin-half bosons with mass dimension three-half: Towards a resolution of the cosmological constant problem.<ref>{{cite journal | doi=10.1209/0295-5075/131/41001| title = Spin-half bosons with mass dimension three-half: Towards a resolution of the cosmological constant problem | last=Ahluwalia | first = D. V. | journal = Europhysics Letters | volume = 131 | | *Spin-half bosons with mass dimension three-half: Towards a resolution of the cosmological constant problem.<ref>{{cite journal | doi=10.1209/0295-5075/131/41001| title = Spin-half bosons with mass dimension three-half: Towards a resolution of the cosmological constant problem | last=Ahluwalia | first = D. V. | journal = Europhysics Letters | volume = 131 | article-number = 41001 | year = 2020| issue = 4 | arxiv = 2008.02630 | bibcode = 2020EL....13141001A | s2cid = 221006246 }}</ref> | ||
*The Theory of Local Mass Dimension One Fermions of Spin One Half.<ref>{{cite journal|title=The Theory of Local Mass Dimension One Fermions of Spin One Half|year=2017|doi=10.1007/s00006-017-0775-1|last1=Ahluwalia|first1= D. V.|journal=Advances in Applied Clifford Algebras|volume=27|issue=3|pages=2247–2285|arxiv=1601.03188|s2cid=119178214}}</ref><ref>{{cite journal|arxiv=hep-th/0410192|doi=10.1103/PhysRevD.72.067701|title=Dark matter: A spin one-half fermion field with mass dimension one?|year=2005|last1=Ahluwalia-Khalilova|first1=D. V.|last2=Grumiller|first2=D.|journal=Physical Review D|volume=72|issue=6| | *The Theory of Local Mass Dimension One Fermions of Spin One Half.<ref>{{cite journal|title=The Theory of Local Mass Dimension One Fermions of Spin One Half|year=2017|doi=10.1007/s00006-017-0775-1|last1=Ahluwalia|first1= D. V.|journal=Advances in Applied Clifford Algebras|volume=27|issue=3|pages=2247–2285|arxiv=1601.03188|s2cid=119178214}}</ref><ref>{{cite journal|arxiv=hep-th/0410192|doi=10.1103/PhysRevD.72.067701|title=Dark matter: A spin one-half fermion field with mass dimension one?|year=2005|last1=Ahluwalia-Khalilova|first1=D. V.|last2=Grumiller|first2=D.|journal=Physical Review D|volume=72|issue=6|article-number=067701|bibcode=2005PhRvD..72f7701A|s2cid=5855098}}</ref><ref>{{cite journal |doi=10.1088/1475-7516/2005/07/012|title=Spin-half fermions with mass dimension one: Theory, phenomenology, and dark matter|year=2005|last1=Ahluwalia-Khalilova|first1=D. V.|last2=Grumiller|first2=D.|s2cid=228040|journal=Journal of Cosmology and Astroparticle Physics|volume=2005|issue=7|page=012|arxiv=hep-th/0412080|bibcode=2005JCAP...07..012A}}</ref> | ||
*Neutrino mixing matrix.<ref>{{cite journal |last1=Stancu|first1=I.|last2=Ahluwalia|first2=D.V.|journal= Physics Letters B|title= L / E flatness of the electron-like event ratio in Super-Kamiokande and a degeneracy in neutrino masses|volume= 460|year= 1999|issue=3–4|pages=431–436|doi=10.1016/S0370-2693(99)00811-4|arxiv=hep-ph/9903408|bibcode=1999PhLB..460..431S|s2cid=14787873}}</ref> | *Neutrino mixing matrix.<ref>{{cite journal |last1=Stancu|first1=I.|last2=Ahluwalia|first2=D.V.|journal= Physics Letters B|title= L / E flatness of the electron-like event ratio in Super-Kamiokande and a degeneracy in neutrino masses|volume= 460|year= 1999|issue=3–4|pages=431–436|doi=10.1016/S0370-2693(99)00811-4|arxiv=hep-ph/9903408|bibcode=1999PhLB..460..431S|s2cid=14787873}}</ref> | ||
*Gravitationally induced neutrino-oscillation phases and neutrino oscillations as powerful energy transport mechanism for type-II supernova explosions.<ref>{{cite journal|last1=Ahluwalia|first1=D.|last2=Burgard|first2=C.|volume=28|year=1996|journal=General Relativity and Gravitation|title=Gravitationally induced neutrino-oscillation phases|issue=10|pages=1161–1170|doi=10.1007/BF03218936|arxiv=gr-qc/9603008|bibcode=1996GReGr..28.1161A|s2cid=15393012}}</ref><ref>{{Cite journal| last=Ahluwalia|first=D.|journal=General Relativity and Gravitation|volume=36|pages=2183–2187|year=2004|title=Neutrino oscillations and supernovae|doi=10.1023/B:GERG.0000038633.96716.04|arxiv=astro-ph/0404055|s2cid=1045277}}</ref> | *Gravitationally induced neutrino-oscillation phases and neutrino oscillations as powerful energy transport mechanism for type-II supernova explosions.<ref>{{cite journal|last1=Ahluwalia|first1=D.|last2=Burgard|first2=C.|volume=28|year=1996|journal=General Relativity and Gravitation|title=Gravitationally induced neutrino-oscillation phases|issue=10|pages=1161–1170|doi=10.1007/BF03218936|arxiv=gr-qc/9603008|bibcode=1996GReGr..28.1161A|s2cid=15393012}}</ref><ref>{{Cite journal| last=Ahluwalia|first=D.|journal=General Relativity and Gravitation|volume=36|pages=2183–2187|year=2004|title=Neutrino oscillations and supernovae|doi=10.1023/B:GERG.0000038633.96716.04|arxiv=astro-ph/0404055|s2cid=1045277}}</ref> | ||
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[[Category:Living people]] | [[Category:Living people]] | ||
[[Category:20th-century Indian physicists]] | [[Category:20th-century Indian physicists]] | ||
[[Category: | [[Category:Indian theoretical physicists]] | ||
[[Category:Delhi University alumni]] | [[Category:Delhi University alumni]] | ||
[[Category:Texas A&M University alumni]] | [[Category:Texas A&M University alumni]] | ||
Latest revision as of 00:12, 8 February 2026
Dharam Vir Ahluwalia | |
|---|---|
![]() | |
| Born | 20 October 1952 |
| Died | 10 October 2023 (aged 70) |
| Alma mater | Texas A&M University (M.S., Ph.D.), M.A, B.Sc |
| Known for | Mass Dimension One Fermions neutrino mixing matrix gravitationally induced phases non-commutative spacetime |
| Awards | GRF First Prize GRF Fourth Prize GRF Fifth Prize GRF Third Prize |
| Scientific career | |
| Fields | Theoretical Physics (Mass Dimension One Fermions) |
| Institutions | Los Alamos National Laboratory University of Zacatecas University of Canterbury Jet Propulsion Laboratory |
Dharam Vir Ahluwalia[1] (born October 20, 1952, in Fatehpur, Kaithal, India) was an Indian-born American theoretical physicist who made significant contributions to physics of neutrino oscillations, gravitationally induced phases, interface of the gravitational and quantum realms, and mass dimension one fermions.[2][3] In 2019 he published Mass Dimension One Fermions .[4]
Early life and education[edit | edit source]
Dharam Vir was born in India. He was a US citizen and a permanent resident of New Zealand.[5]
In 1991, he obtained a Ph.D. from Texas A&M University. During 1992 to 1998 he was at the Los Alamos National Laboratory as a director's postdoctoral fellow and later as a scientist/consultant. From 1998 to 2006 he was a professor of mathematics at the Autonomous University of Zacatecas in Mexico. For the period 2006-2013 he served as a senior lecturer in physics at the University of Canterbury in Christchurch, New Zealand, and afterwards he was a visiting professor at numerous other institutes and universities.[5]
Awards and editorships[edit | edit source]
He was recipient of a Gravity Research Foundation First Prize (1996, jointly with Christoph Burgard),[6] Fourth Prize (1997),[7] Third Prize (2004),[8] and Fifth Prize[9] (2000), with Gilma Adunas, E. Rodriguez-Milla.
He was on the editorial boards of Modern Physics Letters A,[10] the International Journal of Modern Physics A[11] and the International Journal of Modern Physics D.[12]
Selected publications[edit | edit source]
- Mass Dimension One Fermions (Cambridge Monographs on Mathematical Physics, Cambridge University Press, July 2019).[13]
- A new class of mass dimension one fermions.[14]
- Spin-half bosons with mass dimension three-half: Towards a resolution of the cosmological constant problem.[15]
- The Theory of Local Mass Dimension One Fermions of Spin One Half.[16][17][18]
- Neutrino mixing matrix.[19]
- Gravitationally induced neutrino-oscillation phases and neutrino oscillations as powerful energy transport mechanism for type-II supernova explosions.[20][21]
- GR and QM imply quantized spacetime.[22]
- Wave particle duality at the Planck scale.[23]
References[edit | edit source]
- ↑ "Google Scholar".
- ↑ Ahluwalia, Dharam Vir (2017). "The Theory of Local Mass Dimension One Fermions of Spin One Half". Advances in Applied Clifford Algebras. 27 (3): 2247–2285. arXiv:1601.03188. doi:10.1007/s00006-017-0775-1. S2CID 119178214.
- ↑ "ResearchGate Profile".
- ↑ Ahluwalia, Dharam (2019). Cambridge Monographs on Mathematical Physics (Cambridge University Press, July 2019), Cambridge Monographs on Mathematical Physics (Cambridge University Press, July 2019). arXiv:2007.15098. doi:10.1017/9781316145593. ISBN 978-1-316-14559-3. S2CID 197482983.
- ↑ 5.0 5.1 Ahluwalia, Dharam Vir (23 June 2023). "Dharam Vir Ahluwalia". orcid.org. Retrieved 27 June 2023.
{{cite web}}: CS1 maint: deprecated archival service (link) - ↑ "First Prize" (PDF).
- ↑ "Fourth Prize" (PDF).
- ↑ "Third Prize" (PDF).
- ↑ "Fifth Prize" (PDF).
- ↑ "Modern Physics Letters A".
- ↑ "International Journal of Modern Physics A".
- ↑ "International Journal of Modern Physics D".
- ↑ Ahluwalia, Dharam (2019). Mass Dimension One Fermions. arXiv:2007.15098. Bibcode:2019mdof.book.....A. doi:10.1017/9781316145593. ISBN 978-1-316-14559-3. S2CID 197482983.
- ↑ Ahluwalia, D. V. (2020). "A new class of mass dimension one fermions". Proc. R. Soc. A. 476 (2240) 20200249. arXiv:2008.01525. Bibcode:2020RSPSA.47600249V. doi:10.1098/rspa.2020.0249. S2CID 220961416.
- ↑ Ahluwalia, D. V. (2020). "Spin-half bosons with mass dimension three-half: Towards a resolution of the cosmological constant problem". Europhysics Letters. 131 (4) 41001. arXiv:2008.02630. Bibcode:2020EL....13141001A. doi:10.1209/0295-5075/131/41001. S2CID 221006246.
- ↑ Ahluwalia, D. V. (2017). "The Theory of Local Mass Dimension One Fermions of Spin One Half". Advances in Applied Clifford Algebras. 27 (3): 2247–2285. arXiv:1601.03188. doi:10.1007/s00006-017-0775-1. S2CID 119178214.
- ↑ Ahluwalia-Khalilova, D. V.; Grumiller, D. (2005). "Dark matter: A spin one-half fermion field with mass dimension one?". Physical Review D. 72 (6) 067701. arXiv:hep-th/0410192. Bibcode:2005PhRvD..72f7701A. doi:10.1103/PhysRevD.72.067701. S2CID 5855098.
- ↑ Ahluwalia-Khalilova, D. V.; Grumiller, D. (2005). "Spin-half fermions with mass dimension one: Theory, phenomenology, and dark matter". Journal of Cosmology and Astroparticle Physics. 2005 (7): 012. arXiv:hep-th/0412080. Bibcode:2005JCAP...07..012A. doi:10.1088/1475-7516/2005/07/012. S2CID 228040.
- ↑ Stancu, I.; Ahluwalia, D.V. (1999). "L / E flatness of the electron-like event ratio in Super-Kamiokande and a degeneracy in neutrino masses". Physics Letters B. 460 (3–4): 431–436. arXiv:hep-ph/9903408. Bibcode:1999PhLB..460..431S. doi:10.1016/S0370-2693(99)00811-4. S2CID 14787873.
- ↑ Ahluwalia, D.; Burgard, C. (1996). "Gravitationally induced neutrino-oscillation phases". General Relativity and Gravitation. 28 (10): 1161–1170. arXiv:gr-qc/9603008. Bibcode:1996GReGr..28.1161A. doi:10.1007/BF03218936. S2CID 15393012.
- ↑ Ahluwalia, D. (2004). "Neutrino oscillations and supernovae". General Relativity and Gravitation. 36: 2183–2187. arXiv:astro-ph/0404055. doi:10.1023/B:GERG.0000038633.96716.04. S2CID 1045277.
- ↑ Ahluwalia, D. V. (1994). "Quantum measurements, gravitation, and locality". Physics Letters B. 339 (4): 301–303. arXiv:gr-qc/9308007. Bibcode:1994PhLB..339..301A. doi:10.1016/0370-2693(94)90622-X. S2CID 18141427.
- ↑ Ahluwalia, D. V. (2000). "Wave particle duality at the Planck scale: Freezing of neutrino oscillations". Physics Letters A. 275 (1–2): 31–35. arXiv:gr-qc/0002005. Bibcode:2000PhLA..275...31A. doi:10.1016/S0375-9601(00)00578-8. S2CID 15176058.
