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{{short description|English mathematician}}
{{short description|English mathematician (1939–2018)}}
{{other people||Alan Baker (disambiguation){{!}}Alan Baker}}
{{other people||Alan Baker (disambiguation){{!}}Alan Baker}}
{{Use dmy dates|date=June 2021}}
{{Use dmy dates|date=June 2021}}
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| caption =
| caption =
| birth_date = {{birth date|1939|08|19|df=y}}
| birth_date = {{birth date|1939|08|19|df=y}}
| birth_place = [[London]], England
| birth_place = London, England
| death_date = {{death date and age|2018|02|04|1939|08|19|df=y}}
| death_date = {{death date and age|2018|02|04|1939|08|19|df=y}}
| death_place = [[Cambridge]], England
| death_place = [[Cambridge]], England
| nationality = [[United Kingdom|British]]
| field = [[Mathematics]]
| field = [[Mathematics]]
| work_institutions = [[University of Cambridge]]
| work_institutions = [[University of Cambridge]]
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| thesis_title = Some Aspects of Diophantine Approximation
| thesis_title = Some Aspects of Diophantine Approximation
| thesis_year = 1964
| thesis_year = 1964
| known_for = [[Number theory]]<br>[[Diophantine equations]]<br>[[Baker's theorem]]
| known_for = [[Number theory]]<br>[[Diophantine equations]]<br>[[Baker's theorem]]<br>[[Stark–Heegner theorem|Baker–Heegner–Stark theorem]]
| prizes = [[Fields Medal]] (1970)<br>[[Adams Prize]] (1972)
| prizes = [[Fields Medal]] (1970)<br>[[Adams Prize]] (1972)
| footnotes =
| footnotes =
}}
}}
'''Alan Baker''' {{postnom|country=GBR|FRS}} (19 August 1939 – 4 February 2018<ref>[https://www.trin.cam.ac.uk/news/tributes-paid-to-professor-alan-baker/ Trinity College website, retrieved 5 February 2018]</ref>) was an English [[mathematician]], known for his work on effective methods in number theory, in particular those arising from [[transcendental number theory]].
'''Alan Baker''' {{postnom|country=GBR|FRS}}<ref>{{Cite journal |last=Masser |first=David |date=2023 |title=Alan Baker. 19 August 1939—4 February 2018 |url=https://royalsocietypublishing.org/doi/10.1098/rsbm.2022.0033 |journal=Biographical Memoirs of Fellows of the Royal Society |volume=74|pages=9–36 |doi=10.1098/rsbm.2022.0033 |doi-access=free }}</ref> (19 August 1939 – 4 February 2018<ref>[https://www.trin.cam.ac.uk/news/tributes-paid-to-professor-alan-baker/ Trinity College website, retrieved 5 February 2018]</ref>) was an English [[mathematician]], known for his work on effective methods in number theory, in particular those arising from [[transcendental number theory]].


==Life==
==Life==
Alan Baker was born in London on 19 August 1939. He attended [[Stratford School|Stratford Grammar School]], East London, and his academic career started as a student of [[Harold Davenport]], at [[University College London]] and later at [[Trinity College, Cambridge]], where he received his PhD.<ref name="Whos Who">{{Who's Who | surname = BAKER | othernames = Prof. Alan | id = U6216 | type = was | volume = 2019 | edition = online}} {{subscription required}}</ref> He was a visiting scholar at the [[Institute for Advanced Study]] in 1970 when he was awarded the [[Fields Medal]] at the age of 31.<ref>[http://www.ias.edu/people/cos/frontpage?page=7 Institute for Advanced Study: A Community of Scholars] {{webarchive|url=https://web.archive.org/web/20130106144411/http://www.ias.edu/people/cos/frontpage?page=7 |date=6 January 2013 }}</ref> In 1974 he was appointed Professor of Pure Mathematics at [[Cambridge University]], a position he held until 2006 when he became an [[Emeritus]]. He was a fellow of Trinity College from 1964 until his death.<ref name="Whos Who"/>
Alan Baker was born in London on 19 August 1939. He attended [[Stratford School|Stratford Grammar School]], East London, and his academic career started as a student of [[Harold Davenport]], at [[University College London]] and later at [[Trinity College, Cambridge]], where he received his PhD.<ref name="Whos Who">{{Who's Who | title=BAKER, Prof. Alan | id = U6216 | type = was | volume = 2019 | edition = online}}</ref> He was a visiting scholar at the [[Institute for Advanced Study]] in 1970 when he was awarded the [[Fields Medal]] at the age of 31.<ref>[http://www.ias.edu/people/cos/frontpage?page=7 Institute for Advanced Study: A Community of Scholars] {{webarchive|url=https://web.archive.org/web/20130106144411/http://www.ias.edu/people/cos/frontpage?page=7 |date=6 January 2013 }}</ref> In 1974 he was appointed Professor of Pure Mathematics at [[Cambridge University]], a position he held until 2006 when he became an [[Emeritus]]. He was a fellow of Trinity College from 1964 until his death.<ref name="Whos Who"/>


His interests were in number theory, [[Transcendental number theory|transcendence]], [[logarithmic form]]s, [[Effective results in number theory|effective methods]], [[Diophantine geometry]] and [[Diophantine analysis]].
His interests were in number theory, [[Transcendental number theory|transcendence]], [[linear forms in logarithms]], [[Effective results in number theory|effective methods]], [[Diophantine geometry]] and [[Diophantine analysis]].


In 2012 he became a fellow of the [[American Mathematical Society]].<ref>[https://www.ams.org/profession/fellows-list List of Fellows of the American Mathematical Society], retrieved 2012-11-03.</ref> He has also been made a foreign fellow of [[the National Academy of Sciences, India]].<ref name=nasi>{{cite web|url=http://www.nasi.org.in/foreign.asp |title=National Academy of Sciences, India: Foreign Fellows|access-date=2 June 2018}}</ref>
In 2012 he became a fellow of the [[American Mathematical Society]].<ref>[https://www.ams.org/profession/fellows-list List of Fellows of the American Mathematical Society], retrieved 2012-11-03.</ref> He has also been made a foreign fellow of [[the National Academy of Sciences, India]].<ref name=nasi>{{cite web|url=http://www.nasi.org.in/foreign.asp|title=National Academy of Sciences, India: Foreign Fellows|access-date=2 June 2018|archive-date=18 February 2017|archive-url=https://web.archive.org/web/20170218165325/http://www.nasi.org.in/foreign.asp|url-status=dead}}</ref>


==Accomplishments==
==Research==
Baker generalized the [[Gelfond–Schneider theorem]], itself a solution to [[Hilbert's seventh problem]].<ref>Biography in Encyclopædia Britannica.
Baker generalised the [[Gelfond–Schneider theorem]], which itself is a solution to [[Hilbert's seventh problem]].<ref>Biography in Encyclopædia Britannica.
http://www.britannica.com/eb/article-9084909/Alan-Baker</ref> Specifically, Baker showed that if <math>\alpha_1,...,\alpha_n</math> are algebraic numbers (besides 0 or 1), and if <math>\beta_1,..,\beta_n</math> are irrational algebraic numbers such that the set <math>\{1,\beta_1,...,\beta_n\}</math> are linearly independent over the rational numbers, then the number <math>\alpha_1^{\beta_1}\alpha_2^{\beta_2}\cdots\alpha_n^{\beta_n}</math> is transcendental.
http://www.britannica.com/eb/article-9084909/Alan-Baker</ref> Specifically, Baker showed that if <math>\alpha_1,...,\alpha_n</math> are [[algebraic number]]s (besides 0 or 1), and if <math>\beta_1,..,\beta_n</math> are [[irrational number|irrational]] algebraic numbers such that the set <math>\{1,\beta_1,...,\beta_n\}</math> is [[linearly independent]] over the rational numbers, then the number <math>\alpha_1^{\beta_1}\alpha_2^{\beta_2}\cdots\alpha_n^{\beta_n}</math> is [[transcendental number|transcendental]].

Baker made significant contributions to several areas in number theory, such as the Gauss [[class number problem]],<ref name="Goldfeld 1985 class number problem">{{cite journal | last=Goldfeld | first=Dorian | title=Gauss' class number problem for imaginary quadratic fields | journal=Bulletin of the American Mathematical Society | publisher=American Mathematical Society (AMS) | volume=13 | issue=1 | year=1985 | issn=0273-0979 | doi=10.1090/s0273-0979-1985-15352-2 | pages=23–37| doi-access=free }}</ref> diophantine approximation, and to Diophantine equations such as the [[Mordell curve]].<ref name="Masser 2021 Alan Baker">{{cite journal | last=Masser | first=David | title=Alan Baker, FRS, 1939–2018 | journal=Bulletin of the London Mathematical Society | publisher=Wiley | volume=53 | issue=6 | year=2021 | issn=0024-6093 | doi=10.1112/blms.12553 | pages=1916–1949| s2cid=245627886 | doi-access=free }}</ref><ref name="Wüstholz 2019 Alan Baker">{{cite journal | last=Wüstholz | first=Gisbert | title=Obituary of Alan Baker FRS | journal=Acta Arithmetica | publisher=Institute of Mathematics, Polish Academy of Sciences | volume=189 | issue=4 | year=2019 | issn=0065-1036 | doi=10.4064/aa181211-14-12 | pages=309–345| s2cid=197494318 }}</ref>


==Selected publications==
==Selected publications==
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[[Category:21st-century English mathematicians]]
[[Category:21st-century English mathematicians]]
[[Category:Fields Medalists]]
[[Category:Fields Medalists]]
[[Category:Number theorists]]
[[Category:British number theorists]]
[[Category:Alumni of University College London]]
[[Category:Alumni of University College London]]
[[Category:Alumni of Trinity College, Cambridge]]
[[Category:Alumni of Trinity College, Cambridge]]
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[[Category:Fellows of the American Mathematical Society]]
[[Category:Fellows of the American Mathematical Society]]
[[Category:Fellows of the Royal Society]]
[[Category:Fellows of the Royal Society]]
[[Category:Foreign Fellows of the Indian National Science Academy]]
[[Category:Foreign fellows of the Indian National Science Academy]]
[[Category:Institute for Advanced Study visiting scholars]]
[[Category:Institute for Advanced Study visiting scholars]]
[[Category:Cambridge mathematicians]]
[[Category:Cambridge mathematicians]]
[[Category:Mathematicians from London]]
[[Category:Mathematicians from London]]
[[Category:Deaths from cerebrovascular disease]]

Latest revision as of 03:15, 25 November 2024

Alan Baker
Born(1939-08-19)19 August 1939
London, England
Died4 February 2018(2018-02-04) (aged 78)
Cambridge, England
Alma materUniversity College London
University of Cambridge
Known forNumber theory
Diophantine equations
Baker's theorem
Baker–Heegner–Stark theorem
AwardsFields Medal (1970)
Adams Prize (1972)
Scientific career
FieldsMathematics
InstitutionsUniversity of Cambridge
Thesis Some Aspects of Diophantine Approximation  (1964)
Doctoral advisorHarold Davenport
Doctoral studentsJohn Coates
Yuval Flicker
Roger Heath-Brown
David Masser
Cameron Stewart

Alan Baker FRS[1] (19 August 1939 – 4 February 2018[2]) was an English mathematician, known for his work on effective methods in number theory, in particular those arising from transcendental number theory.

Life

[edit]

Alan Baker was born in London on 19 August 1939. He attended Stratford Grammar School, East London, and his academic career started as a student of Harold Davenport, at University College London and later at Trinity College, Cambridge, where he received his PhD.[3] He was a visiting scholar at the Institute for Advanced Study in 1970 when he was awarded the Fields Medal at the age of 31.[4] In 1974 he was appointed Professor of Pure Mathematics at Cambridge University, a position he held until 2006 when he became an Emeritus. He was a fellow of Trinity College from 1964 until his death.[3]

His interests were in number theory, transcendence, linear forms in logarithms, effective methods, Diophantine geometry and Diophantine analysis.

In 2012 he became a fellow of the American Mathematical Society.[5] He has also been made a foreign fellow of the National Academy of Sciences, India.[6]

Research

[edit]

Baker generalised the Gelfond–Schneider theorem, which itself is a solution to Hilbert's seventh problem.[7] Specifically, Baker showed that if are algebraic numbers (besides 0 or 1), and if are irrational algebraic numbers such that the set is linearly independent over the rational numbers, then the number is transcendental.

Baker made significant contributions to several areas in number theory, such as the Gauss class number problem,[8] diophantine approximation, and to Diophantine equations such as the Mordell curve.[9][10]

Selected publications

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  • Baker, Alan (1966), "Linear forms in the logarithms of algebraic numbers. I", Mathematika, 13 (2): 204–216, doi:10.1112/S0025579300003971, ISSN 0025-5793, MR 0220680
  • Baker, Alan (1967a), "Linear forms in the logarithms of algebraic numbers. II", Mathematika, 14: 102–107, doi:10.1112/S0025579300008068, ISSN 0025-5793, MR 0220680
  • Baker, Alan (1967b), "Linear forms in the logarithms of algebraic numbers. III", Mathematika, 14 (2): 220–228, doi:10.1112/S0025579300003843, ISSN 0025-5793, MR 0220680
  • Baker, Alan (1990), Transcendental number theory, Cambridge Mathematical Library (2nd ed.), Cambridge University Press, ISBN 978-0-521-39791-9, MR 0422171; 1st edition. 1975.[11]
  • Baker, Alan; Wüstholz, G. (2007), Logarithmic forms and Diophantine geometry, New Mathematical Monographs, vol. 9, Cambridge University Press, ISBN 978-0-521-88268-2, MR 2382891

Honours and awards

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References

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  1. ^ Masser, David (2023). "Alan Baker. 19 August 1939—4 February 2018". Biographical Memoirs of Fellows of the Royal Society. 74: 9–36. doi:10.1098/rsbm.2022.0033.
  2. ^ Trinity College website, retrieved 5 February 2018
  3. ^ a b "BAKER, Prof. Alan". Who's Who & Who Was Who. Vol. 2019 (online ed.). A & C Black. (Subscription or UK public library membership required.)
  4. ^ Institute for Advanced Study: A Community of Scholars Archived 6 January 2013 at the Wayback Machine
  5. ^ List of Fellows of the American Mathematical Society, retrieved 2012-11-03.
  6. ^ "National Academy of Sciences, India: Foreign Fellows". Archived from the original on 18 February 2017. Retrieved 2 June 2018.
  7. ^ Biography in Encyclopædia Britannica. http://www.britannica.com/eb/article-9084909/Alan-Baker
  8. ^ Goldfeld, Dorian (1985). "Gauss' class number problem for imaginary quadratic fields". Bulletin of the American Mathematical Society. 13 (1). American Mathematical Society (AMS): 23–37. doi:10.1090/s0273-0979-1985-15352-2. ISSN 0273-0979.
  9. ^ Masser, David (2021). "Alan Baker, FRS, 1939–2018". Bulletin of the London Mathematical Society. 53 (6). Wiley: 1916–1949. doi:10.1112/blms.12553. ISSN 0024-6093. S2CID 245627886.
  10. ^ Wüstholz, Gisbert (2019). "Obituary of Alan Baker FRS". Acta Arithmetica. 189 (4). Institute of Mathematics, Polish Academy of Sciences: 309–345. doi:10.4064/aa181211-14-12. ISSN 0065-1036. S2CID 197494318.
  11. ^ Stolarsky, Kenneth B. (1978). "Review: Transcendental number theory by Alan Baker; Lectures on transcendental numbers by Kurt Mahler; Nombres transcendants by Michel Waldschmidt" (PDF). Bull. Amer. Math. Soc. 84 (8): 1370–1378. doi:10.1090/S0002-9904-1978-14584-4.
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