Derrick Henry Lehmer
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Derrick Henry "Dick" Lehmer (February 23, 1905–May 22, 1991) was an American mathematician who refined Edouard Lucas' work in the 1930s and devised the Lucas-Lehmer test for Mersenne primes. Lehmer's peripatetic career as a number theorist, with he and his wife taking numerous types of work in the United States and abroad to support themselves during the Great Depression, fortuitously brought him into the center of research into early electronic computing.
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[edit] Early life
Lehmer was born in Berkeley, California, to Derrick Norman Lehmer, a professor of mathematics at the University of California, Berkeley, and Clara Eunice Mitchell.
He studied physics and earned a Bachelor degree from UC Berkeley, and continued with graduate studies at the University of Chicago.
[edit] Marriage
During his studies at Berkeley, Lehmer met Emma Markovna Trotskaia (born November 6, 1906), a Russian student of his father's, who had begun with work toward an engineering degree but had subsequently switched focus to mathematics, earning her B.A. in 1928. Later that same year, Lehmer married Emma and, following a tour of Northern California and a trip to Japan to meet Emma's family, they moved by car to Providence, Rhode Island, after Brown University offered him an instructorship.
[edit] Career
Lehmer received a Master's degree and a Ph.D., both from Brown University, in 1929 and 1930, respectively; his wife obtained a Master's degree in 1930 as well, coaching mathematics to supplement the family income, while also helping her husband type his Ph.D. thesis, An Extended Theory of Lucas' Functions, which he wrote under Jacob Tamarkin.
[edit] Movements during the Depression
Lehmer became a National Research Fellow, allowing him to take positions at the California Institute of Technology from 1930 to 1931 and at Stanford University from 1931 to 1932. In the latter year, the couple's first child Laura was born.
After being awarded a second National Research Fellowship, the Lehmers moved on to Princeton, New Jersey between 1932 and 1934, where Dick spent a short time at the Institute for Advanced Study.
He worked at Lehigh University in Pennsylvania from 1934 until 1938. Their son Donald was born in 1934 while Dick and Emma were at Lehigh.
The year 1938-1939 was spent in England on a Guggenheim Fellowship visiting both the University of Cambridge and the University of Manchester, meeting G. H. Hardy, John Edensor Littlewood, Harold Davenport, Kurt Mahler, Louis Mordell, and Paul Erdős. The Lehmers returned to America by ship with second child Donald just before the beginning of the Battle of the Atlantic.
Lehmer continued at Lehigh University for the 1939-1940 academic year.
[edit] Settling down
In 1940, Lehmer accepted a position back at the mathematics department of UC Berkeley. At some point in his career there, he developed the Linear congruential generator (pseudorandom number generator), which is frequently referred to as a Lehmer random number generator. The Lehmers also assisted Harry Vandiver with his work on Fermat's Last Theorem, computing many Bernoulli numbers required.
Lehmer was chairman of the Department of Mathematics at University of California, Berkeley from 1954 until 1957. He continued working at UC Berkeley until 1972, the year he became professor emeritus.
[edit] ENIAC involvement
From 1945-1946, Lehmer served on the Computations Committee at Aberdeen Proving Grounds in Maryland, a group established as part of the Ballistics Research Laboratory to prepare the ENIAC for utilization following its completion at the University of Pennsylvania's Moore School of Electrical Engineering; the other Computations Committee members were Haskell Curry, Leland Cunningham, and Franz Alt. It was during this short tenure that the Lehmers ran some of the first test programs on the ENIAC—according to their academic interests, these tests involved number theory, especially sieve methods. When they could arrange child care, the Lehmers spent weekends staying up all night running such problems, the first over the Thanksgiving weekend of 1945. (Such tests were run without cost, since the ENIAC would have been left powered on anyway in the interest of minimizing vacuum tube failures.) The problem run during the 3-day Independence Day weekend of July 4, 1946, with John Mauchly serving as computer operator, ran around the clock without interruption or failure. The following Tuesday, July 9, 1946, Lehmer delivered the talk "Computing Machines for Pure Mathematics" as part of the Moore School Lectures, in which he introduced computing as an experimental science, and demonstrated the wit and humor typical of his teaching lectures.
Lehmer would remain active in computing developments for the remainder of his career. Upon his return to Berkeley, he made plans for building the California Digital Computer (CALDIC) with Paul Morton and Leland Cunningham.
[edit] McCarthy era
In 1950, Lehmer was one of 31 University of California faculty fired after refusing to sign a loyalty oath, a policy initiated by the Board of Regents of the State of California in 1950 during the Communist scare personified by Senator Joseph McCarthy. Lehmer took a post as Director of the National Bureau of Standards' Institute for Numerical Analysis (INA), working with the Standards Western Automatic Computer (SWAC). On October 17, 1952, the State Supreme Court proclaimed the oath unconstitutional, and Lehmer returned to Berkeley shortly thereafter.
[edit] Death
Lehmer died in Berkeley on May 22, 1991.
[edit] See also
- Mathematics
- Edouard Lucas
- Lucas-Lehmer test
- Lucas-Lehmer test for Mersenne numbers
- Prime number
- Mersenne prime
[edit] External links
- Biography
- Photo of Derrick Henry Lehmer
- The Lehmers at Berkeley
- Timeline: Summary of events of the Loyalty Oath Controversy 1949-54
- O'Connor, John J., and Edmund F. Robertson. "Derrick Henry Lehmer". MacTutor History of Mathematics archive.
- Interview with the Lehmers and others about their experiences at Princeton
- Derrick Henry Lehmer at the Mathematics Genealogy Project
- Alt, Franz L. (1972-07). "Archaeology of Computers—Reminiscences, 1945-1947" (PDF). Communications of the ACM 15 (7): 693–694. ISSN 0001-0782.