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| name = Gary W. Elsesser
| name = Gary W. Elsesser
| alt = Gary W. Elsesser
| alt = Gary W. Elsesser
| birth_date = {{birth date|1959|00|00|mf=y}}
| birth_date = {{birth year and age|1959}}
| fields = [[Mathematician]], [[Computer Scientist]]
| fields = [[Mathematician]], [[Computer Scientist]]
| residence = Eagan, MN, United States
| residence = Eagan, MN, United States
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BS (Mathematics, Computer Science, U. of Wisconsin, Madison); MS (Computer Science, UW, Madison); Ph.D. (Computer Science, U. of Minnesota).  Dr. Elsesser performs research in compiler optimizations for parallel and vector machines.  He has a strong background in programming languages and software design. He spent 13 years at Cray, Inc., doing compiler R&D, and he works with Cray X1 systems on a regular basis. Gary is interested in developing computer simulations of the atom based on Common Sense Science models.
'''Gary W. Elsesser''' (born 1959) is an American [[Mathematician|mathematician]] and [[Computer Scientist|computer scientist]] specializing in compiler optimization for parallel and vector supercomputers. He is interested in developing computer simulations of the atom based on [[Common Sense Science]] models.
 
==Biography==
Elsesser earned a BS in mathematics and computer science and an MS in computer science from the University of Wisconsin–Madison, followed by a Ph.D. in computer science from the University of Minnesota. His research career has focused on compiler technology for high-performance computing.
 
Early in his career he worked at the Honeywell Technology Center in Minneapolis. He subsequently spent thirteen years at Cray, Inc., where he served as a senior member of the technical staff, conducting compiler research and development and working regularly with Cray X1 systems. He resides in Eagan, Minnesota.
 
==Work==
Elsesser's professional research concerns compiler optimizations for parallel and vector machines, with a strong background in programming languages and software design. His published work includes studies of DOALL loops in the Perfect Club benchmark, processor preallocation and load balancing of DOALL loops, and the definition of the F−− extension to Fortran 90.
 
Outside his professional field, Elsesser has expressed an interest in developing computer simulations of the atom based on the toroidal ring models advocated by Common Sense Science.
 
==External links==
* [https://link.springer.com/article/10.1007/BF01204659 "Processor preallocation and load balancing of DOALL loops," The Journal of Supercomputing]
* [https://link.springer.com/chapter/10.1007/BFb0032700 "Definition of the F−− extension to Fortran 90," Languages and Compilers for Parallel Computing (LCPC 1997)]


[[Category:Scientist|Elsesser Gary]]
[[Category:Scientist|Elsesser Gary]]
[[Category:Worldwide List of Dissident Scientists]]
[[Category:Atomic Structure]]
[[Category:Toroidal Ring]]

Latest revision as of 16:31, 20 July 2026

Gary W. Elsesser
Born1959 (age 66–67)
ResidenceEagan, MN, United States
NationalityUSA
Known forAtomic Structure, Toroidal Ring
Scientific career
FieldsMathematician, Computer Scientist

Gary W. Elsesser (born 1959) is an American mathematician and computer scientist specializing in compiler optimization for parallel and vector supercomputers. He is interested in developing computer simulations of the atom based on Common Sense Science models.

Biography

Elsesser earned a BS in mathematics and computer science and an MS in computer science from the University of Wisconsin–Madison, followed by a Ph.D. in computer science from the University of Minnesota. His research career has focused on compiler technology for high-performance computing.

Early in his career he worked at the Honeywell Technology Center in Minneapolis. He subsequently spent thirteen years at Cray, Inc., where he served as a senior member of the technical staff, conducting compiler research and development and working regularly with Cray X1 systems. He resides in Eagan, Minnesota.

Work

Elsesser's professional research concerns compiler optimizations for parallel and vector machines, with a strong background in programming languages and software design. His published work includes studies of DOALL loops in the Perfect Club benchmark, processor preallocation and load balancing of DOALL loops, and the definition of the F−− extension to Fortran 90.

Outside his professional field, Elsesser has expressed an interest in developing computer simulations of the atom based on the toroidal ring models advocated by Common Sense Science.

External links