OPUCEM: A library with error checking mechanism for computing oblique parameters
After a brief review of the electroweak radiative corrections to gauge-boson self-energies, otherwise known as the direct and oblique corrections, a tool for calculation of the oblique parameters is presented. This tool, named OPUCEM, brings together formulas from multiple physics models and provide...
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Published in | Computer physics communications Vol. 182; no. 8; pp. 1732 - 1743 |
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Main Authors | , , , |
Format | Journal Article |
Language | English |
Published |
Elsevier B.V
01.08.2011
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Subjects | |
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Abstract | After a brief review of the electroweak radiative corrections to gauge-boson self-energies, otherwise known as the direct and oblique corrections, a tool for calculation of the oblique parameters is presented. This tool, named OPUCEM, brings together formulas from multiple physics models and provides an error-checking machinery to improve reliability of numerical results. It also sets a novel example for an “open-formula” concept, which is an attempt to improve the reliability and reproducibility of computations in scientific publications by encouraging the authors to open-source their numerical calculation programs. Finally, we demonstrate the use of OPUCEM in two detailed case studies related to the fourth Standard Model family. The first is a generic fourth family study to find relations between the parameters compatible with the EW precision data and the second is the particular study of the flavor democracy predictions for both Dirac and Majorana-type neutrinos.
Program title: OPUCEM (library)
Catalogue identifier: AEIW_v1_0
Program summary URL:http://cpc.cs.qub.ac.uk/summaries/AEIW_v1_0.html
Program obtainable from: CPC Program Library, Queenʼs University, Belfast, N. Ireland
Licensing provisions: Standard CPC licence, http://cpc.cs.qub.ac.uk/licence/licence.html
No. of lines in distributed program, including test data, etc.: 175 457
No. of bytes in distributed program, including test data, etc.: 1 061 012
Distribution format: tar.gz
Programming language: C/C++
Computer: PCs and Workstations
Operating system: Any Unix based system such as Linux and MacOSX, partial testing with Cygwin under Windows
RAM: GUI takes about 25 MB, the individual library calls are negligible
Classification: 11.1, 11.6
External routines: ROOT library set (optional), complex number constructs from either the C99 standard or from the C++ Technical Report 1 (ISO/IEC TR 19768)
Nature of problem: The calculation of Electroweak Precision variables for each point of the parameter space of a given beyond the Standard Model theory is tedious and error prone. The available formulas in the literature sometimes contain typos and most of the time they are valid only under some specific conditions, not suitable for quick comparison across different studies nor direct implementation on a computer.
Solution method: One loop exact calculation of the oblique parameters are collected into a freely available C/C++ library for a number of models. One-loop exact calculation of the contributions of a number of models to the oblique parameters are collected in a freely available C/C++ library. The public availability of the implementations and the internal error checking mechanism aim the correctness of the results. Additionally, the Graphical User Interface and auxiliary tools provide the means for rapid result comparison or update when new data becomes available.
Unusual features: The library computes the oblique parameters S, T and U both with exact one-loop calculations and with well-defined approximations for a number of models to establish a certain level of confidence. The comparisons between exact and approximate computations, and amongst formulas from different papers provide an error checking machinery which improves the end user reliability.
Running time: Fractions of a second for each function call
► A C/C++ library, OPUCEM, is developed to calculate the oblique parameters. ► The embedded error checking mechanism verifies the validity of the calculations. ► This free library includes corrected formulae for a number of new physics models. ► The fourth family parameter space is studied covering Dirac and Majorana cases. ► We find empirical formulae correlating masses most compatible with EW precision data. |
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AbstractList | After a brief review of the electroweak radiative corrections to gauge-boson self-energies, otherwise known as the direct and oblique corrections, a tool for calculation of the oblique parameters is presented. This tool, named OPUCEM, brings together formulas from multiple physics models and provides an error-checking machinery to improve reliability of numerical results. It also sets a novel example for an "open-formula" concept, which is an attempt to improve the reliability and reproducibility of computations in scientific publications by encouraging the authors to open-source their numerical calculation programs. Finally, we demonstrate the use of OPUCEM in two detailed case studies related to the fourth Standard Model family. The first is a generic fourth family study to find relations between the parameters compatible with the EW precision data and the second is the particular study of the flavor democracy predictions for both Dirac and Majorana-type neutrinos. Program summary Program title: OPUCEM (library) Catalogue identifier: AEIW_v1_0 Program summary URL: http://cpc.cs.qub.ac.uk/summaries/AEIW_v1_0.html Program obtainable from: CPC Program Library, QueenE14s University, Belfast, N. Ireland Licensing provisions: Standard CPC licence, http://cpc.cs.qub.ac.uk/licence/licence.html No. of lines in distributed program, including test data, etc.: 175 457 No. of bytes in distributed program, including test data, etc.: 1 061 012 Distribution format: tar.gz Programming language: C/C++ Computer: PCs and Workstations Operating system: Any Unix based system such as Linux and MacOSX, partial testing with Cygwin under Windows RAM: GUI takes about 25 MB, the individual library calls are negligible Classification: 11.1, 11.6 External routines: ROOT library set (optional), complex number constructs from either the C99 standard or from the C++ Technical Report 1 (ISO/IEC TR 19768) Nature of problem: The calculation of Electroweak Precision variables for each point of the parameter space of a given beyond the Standard Model theory is tedious and error prone. The available formulas in the literature sometimes contain typos and most of the time they are valid only under some specific conditions, not suitable for quick comparison across different studies nor direct implementation on a computer. Solution method: One loop exact calculation of the oblique parameters are collected into a freely available C/C++ library for a number of models. One-loop exact calculation of the contributions of a number of models to the oblique parameters are collected in a freely available C/C++ library. The public availability of the implementations and the internal error checking mechanism aim the correctness of the results. Additionally, the Graphical User Interface and auxiliary tools provide the means for rapid result comparison or update when new data becomes available. Unusual features: The library computes the oblique parameters S, T and U both with exact one-loop calculations and with well-defined approximations for a number of models to establish a certain level of confidence. The comparisons between exact and approximate computations, and amongst formulas from different papers provide an error checking machinery which improves the end user reliability. Running time: Fractions of a second for each function call After a brief review of the electroweak radiative corrections to gauge-boson self-energies, otherwise known as the direct and oblique corrections, a tool for calculation of the oblique parameters is presented. This tool, named OPUCEM, brings together formulas from multiple physics models and provides an error-checking machinery to improve reliability of numerical results. It also sets a novel example for an “open-formula” concept, which is an attempt to improve the reliability and reproducibility of computations in scientific publications by encouraging the authors to open-source their numerical calculation programs. Finally, we demonstrate the use of OPUCEM in two detailed case studies related to the fourth Standard Model family. The first is a generic fourth family study to find relations between the parameters compatible with the EW precision data and the second is the particular study of the flavor democracy predictions for both Dirac and Majorana-type neutrinos. Program title: OPUCEM (library) Catalogue identifier: AEIW_v1_0 Program summary URL:http://cpc.cs.qub.ac.uk/summaries/AEIW_v1_0.html Program obtainable from: CPC Program Library, Queenʼs University, Belfast, N. Ireland Licensing provisions: Standard CPC licence, http://cpc.cs.qub.ac.uk/licence/licence.html No. of lines in distributed program, including test data, etc.: 175 457 No. of bytes in distributed program, including test data, etc.: 1 061 012 Distribution format: tar.gz Programming language: C/C++ Computer: PCs and Workstations Operating system: Any Unix based system such as Linux and MacOSX, partial testing with Cygwin under Windows RAM: GUI takes about 25 MB, the individual library calls are negligible Classification: 11.1, 11.6 External routines: ROOT library set (optional), complex number constructs from either the C99 standard or from the C++ Technical Report 1 (ISO/IEC TR 19768) Nature of problem: The calculation of Electroweak Precision variables for each point of the parameter space of a given beyond the Standard Model theory is tedious and error prone. The available formulas in the literature sometimes contain typos and most of the time they are valid only under some specific conditions, not suitable for quick comparison across different studies nor direct implementation on a computer. Solution method: One loop exact calculation of the oblique parameters are collected into a freely available C/C++ library for a number of models. One-loop exact calculation of the contributions of a number of models to the oblique parameters are collected in a freely available C/C++ library. The public availability of the implementations and the internal error checking mechanism aim the correctness of the results. Additionally, the Graphical User Interface and auxiliary tools provide the means for rapid result comparison or update when new data becomes available. Unusual features: The library computes the oblique parameters S, T and U both with exact one-loop calculations and with well-defined approximations for a number of models to establish a certain level of confidence. The comparisons between exact and approximate computations, and amongst formulas from different papers provide an error checking machinery which improves the end user reliability. Running time: Fractions of a second for each function call ► A C/C++ library, OPUCEM, is developed to calculate the oblique parameters. ► The embedded error checking mechanism verifies the validity of the calculations. ► This free library includes corrected formulae for a number of new physics models. ► The fourth family parameter space is studied covering Dirac and Majorana cases. ► We find empirical formulae correlating masses most compatible with EW precision data. |
Author | Ünel, Gökhan Çobanoǧlu, Özgür Sultansoy, Saleh Özcan, Erkcan |
Author_xml | – sequence: 1 givenname: Özgür surname: Çobanoǧlu fullname: Çobanoǧlu, Özgür organization: European Nuclear Research Center, CERN, Geneva, Switzerland – sequence: 2 givenname: Erkcan surname: Özcan fullname: Özcan, Erkcan organization: Department of Physics and Astronomy, University College London, London, UK – sequence: 3 givenname: Saleh surname: Sultansoy fullname: Sultansoy, Saleh organization: TOBB ETU, Physics Department, Ankara, Turkey – sequence: 4 givenname: Gökhan surname: Ünel fullname: Ünel, Gökhan email: gokhan.unel@cern.ch organization: Physics and Astronomy Department, University of California at Irvine, Irvine, CA, USA |
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CitedBy_id | crossref_primary_10_1007_JHEP08_2011_072 crossref_primary_10_1142_S0217732312501611 crossref_primary_10_1007_JHEP06_2012_135 crossref_primary_10_1007_JHEP09_2019_035 crossref_primary_10_1016_j_cpc_2023_109027 crossref_primary_10_1016_j_physletb_2012_02_088 crossref_primary_10_1142_S0217751X12500212 crossref_primary_10_1155_2015_134898 crossref_primary_10_1155_2013_910275 crossref_primary_10_1140_epjc_s10052_012_1966_5 |
Cites_doi | 10.1103/PhysRevD.48.R3963 10.1103/PhysRevD.57.2771 10.1088/1126-6708/2001/10/007 10.1016/0370-2693(91)91378-9 10.1016/S0370-2693(02)01240-6 10.1103/PhysRevD.46.381 10.1016/0550-3213(89)90483-5 10.1103/PhysRevD.76.015014 10.1142/S0217751X97001079 10.1134/1.1514752 10.1103/PhysRevD.81.075023 10.1103/PhysRevD.76.075016 10.1063/1.2733040 10.1016/j.physletb.2008.07.018 10.1186/1754-0410-3-4 10.1016/j.cpc.2009.08.005 10.1103/PhysRevD.79.113008 10.1007/BF02847136 10.1016/0370-2693(92)91367-I 10.1142/S0217732395001964 10.1016/0370-2693(94)01398-V 10.1103/PhysRevD.64.053004 10.1103/PhysRevLett.67.1840 10.1103/PhysRevD.45.R729 10.1103/PhysRevD.48.225 |
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SubjectTerms | C++ (programming language) Computation Computer simulation EW precision data Fourth family Libraries Mathematical analysis Mathematical models Oblique parameters Standard Model |
Title | OPUCEM: A library with error checking mechanism for computing oblique parameters |
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