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Dive into the research topics where J. Ohnemus is active.

Publication


Featured researches published by J. Ohnemus.


Physical Review D | 1991

Order-. alpha. sub s calculation of hadronic W sup minus W+ production

J. Ohnemus

An order-


Physical Review D | 1991

Order-. alpha. sub s calculation of hadronic ZZ production

J. Ohnemus; J. F. Owens

{\mathrm{\ensuremath{\alpha}}}_{\mathit{s}}


Physical Review D | 1991

An order

J. Ohnemus

calculation of


International Journal of Modern Physics A | 1989

\alpha_{s}

V. Barger; J. Ohnemus; R.J.N. Phillips

{\mathit{pp}}^{(\mathrm{\ensuremath{-}})}


Physics Letters B | 1990

calculation of hadronic W

Howard Baer; J. Ohnemus; J.F. Owens

\ensuremath{\rightarrow}


European Physical Journal C | 1989

^{\pm}

Howard Baer; J. Ohnemus; D. Zeppenfeld

{\mathit{W}}^{\mathrm{\ensuremath{-}}}


Physics Letters B | 1989

Z production

V. Barger; Tao Han; J. Ohnemus; D. Zeppenfeld


Physical Review D | 1988

Spin correlation effects in the hadroproduction and decay of very heavy top quark pairs

V. Barger; Tao Han; J. Ohnemus

{\mathit{W}}^{+}


Physical Review D | 1991

A Calculation of the Direct Photon Plus Jet Cross-Section in the Next-To-Leading Logarithm Approximation

V. Barger; Kingman Cheung; Tao Han; J. Ohnemus; D. Zeppenfeld

+X is presented. Results are given for the total cross section and differential distributions for Fermilab Tevatron, CERN LHC, and Superconducting SuperCollider energies. The calculation utilizes a combination of analytic and Monte Carlo integration methods which makes it easy to calculate a variety of observables and to impose experimental cuts.


Physical Review D | 1990

HadronicW-decays at HERA

V. Barger; J. Ohnemus; Tao Han; D. Zeppenfeld

An order-{alpha}{sub {ital s}} calculation of {ital pp}{sup ({minus})}{r arrow}{ital ZZ}+{ital X} is presented. Results are given for the total cross section and differential distributions for Fermilab Tevatron, CERN Large Hadron and Collider, and Superconducting Super Collider energies. The calculation utilizes a combination of analytic and Monte Carlo integration methods which makes it easy to calculate a variety of observables and to impose experimental cuts.

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V. Barger

University of Wisconsin-Madison

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D. Zeppenfeld

Karlsruhe Institute of Technology

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Tao Han

University of Pittsburgh

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Howard Baer

University of Oklahoma

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R.J.N. Phillips

Rutherford Appleton Laboratory

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T. Han

University of Wisconsin-Madison

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D. Zeppenfeld

Karlsruhe Institute of Technology

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J. F. Owens

Florida State University

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J.F. Owens

Florida State University

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John F. Gunion

University of California

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