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Felix Kahlhoefer
Researcher at RWTH Aachen University
Publications - 151
Citations - 10813
Felix Kahlhoefer is an academic researcher from RWTH Aachen University. The author has contributed to research in topics: Dark matter & Physics beyond the Standard Model. The author has an hindex of 53, co-authored 135 publications receiving 8863 citations. Previous affiliations of Felix Kahlhoefer include University of Oxford & University of California, Santa Barbara.
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Journal ArticleDOI
A facility to search for hidden particles at the CERN SPS: the SHiP physics case.
Sergey Alekhin,Wolfgang Altmannshofer,Takehiko Asaka,Brian Batell,Fedor Bezrukov,Kyrylo Bondarenko,Alexey Boyarsky,Ki-Young Choi,Cristóbal Corral,Nathaniel Craig,David Curtin,Sacha Davidson,Sacha Davidson,André de Gouvêa,Stefano Dell'Oro,Patrick deNiverville,P. S. Bhupal Dev,Herbi K. Dreiner,Marco Drewes,Shintaro Eijima,Rouven Essig,Anthony Fradette,Björn Garbrecht,Belen Gavela,Gian F. Giudice,Mark D. Goodsell,Mark D. Goodsell,Dmitry Gorbunov,Stefania Gori,Christophe Grojean,Alberto Guffanti,Thomas Hambye,Steen Honoré Hansen,Juan Carlos Helo,Juan Carlos Helo,Pilar Hernández,Alejandro Ibarra,Artem Ivashko,Artem Ivashko,Eder Izaguirre,Joerg Jaeckel,Yu Seon Jeong,Felix Kahlhoefer,Yonatan Kahn,Andrey Katz,Andrey Katz,Andrey Katz,Choong Sun Kim,Sergey Kovalenko,Gordan Krnjaic,Valery E. Lyubovitskij,Valery E. Lyubovitskij,Valery E. Lyubovitskij,Simone Marcocci,Matthew McCullough,David McKeen,Guenakh Mitselmakher,Sven Moch,Rabindra N. Mohapatra,David E. Morrissey,Maksym Ovchynnikov,Emmanuel A. Paschos,Apostolos Pilaftsis,Maxim Pospelov,Maxim Pospelov,Mary Hall Reno,Andreas Ringwald,Adam Ritz,Leszek Roszkowski,Valery Rubakov,Oleg Ruchayskiy,Oleg Ruchayskiy,Ingo Schienbein,Daniel Schmeier,Kai Schmidt-Hoberg,Pedro Schwaller,Goran Senjanovic,Osamu Seto,Mikhail Shaposhnikov,Lesya Shchutska,J. Shelton,Robert Shrock,Brian Shuve,Michael Spannowsky,Andrew Spray,Florian Staub,Daniel Stolarski,Matt Strassler,Vladimir Tello,Francesco Tramontano,Anurag Tripathi,Sean Tulin,Francesco Vissani,Martin Wolfgang Winkler,Kathryn M. Zurek,Kathryn M. Zurek +95 more
TL;DR: It is demonstrated that the SHiP experiment has a unique potential to discover new physics and can directly probe a number of solutions of beyond the standard model puzzles, such as neutrino masses, baryon asymmetry of the Universe, dark matter, and inflation.
Journal ArticleDOI
A facility to Search for Hidden Particles at the CERN SPS: the SHiP physics case
Sergey Alekhin,Wolfgang Altmannshofer,Takehiko Asaka,Brian Batell,Fedor Bezrukov,Kyrylo Bondarenko,Alexey Boyarsky,Nathaniel Craig,Ki-Young Choi,Cristóbal Corral,David Curtin,Sacha Davidson,André de Gouvêa,Stefano Dell'Oro,Patrick deNiverville,P. S. Bhupal Dev,Herbi K. Dreiner,Marco Drewes,Shintaro Eijima,Rouven Essig,Anthony Fradette,Björn Garbrecht,Belen Gavela,Gian F. Giudice,Dmitry Gorbunov,Stefania Gori,Christophe Grojean,Mark D. Goodsell,Alberto Guffanti,Thomas Hambye,Steen Honoré Hansen,Juan Carlos Helo,Pilar Hernández,Alejandro Ibarra,Artem Ivashko,Eder Izaguirre,Joerg Jaeckel,Yu Seon Jeong,Felix Kahlhoefer,Yonatan Kahn,Andrey Katz,Choong Sun Kim,Sergey A. Kovalenko,Gordan Krnjaic,Valery E. Lyubovitskij,Simone Marcocci,Matthew McCullough,David McKeen,Guenakh Mitselmakher,Sven-Olaf Moch,Rabindra N. Mohapatra,David E. Morrissey,Maksym Ovchynnikov,Emmanuel A. Paschos,Apostolos Pilaftsis,Maxim Pospelov,Mary Hall Reno,Andreas Ringwald,Adam Ritz,Leszek Roszkowski,Valery Rubakov,Oleg Ruchayskiy,Jessie Shelton,Ingo Schienbein,Daniel Schmeier,Kai Schmidt-Hoberg,Pedro Schwaller,Goran Senjanovic,Osamu Seto,Mikhail Shaposhnikov,Brian Shuve,Robert Shrock,Lesya Shchutska,Michael Spannowsky,Andrew Spray,Florian Staub,Daniel Stolarski,Matt Strassler,Vladimir Tello,Francesco Tramontano,Anurag Tripathi,Sean Tulin,Francesco Vissani,Martin Wolfgang Winkler,Kathryn M. Zurek +84 more
TL;DR: The SHiP (Search for Hidden Particles) experiment at CERN as discussed by the authors was designed to search for new physics in the largely unexplored domain of very weakly interacting particles with masses below the Fermi scale, inaccessible to the LHC experiments.
Journal ArticleDOI
Simplified Models for Dark Matter Searches at the LHC
Jalal Abdallah,Henrique Araujo,Alexandre Arbey,Alexandre Arbey,Alexandre Arbey,Adi Ashkenazi,Alexander Belyaev,Joshua Berger,Celine Boehm,Antonio Boveia,Amelia Jean Brennan,James John Brooke,Oliver Buchmueller,Matthew R. Buckley,Giorgio Busoni,Lorenzo Calibbi,Lorenzo Calibbi,Sushil Chauhan,Nadir Daci,Gavin Davies,Isabelle De Bruyn,Paul De Jong,Albert De Roeck,Kees de Vries,D. Del Re,Andrea De Simone,Andrea Di Simone,Caterina Doglioni,Matthew J. Dolan,Herbi K. Dreiner,John Ellis,John Ellis,Sarah Catherine Eno,Erez Etzion,Malcolm Fairbairn,Brian Feldstein,Henning Flaecher,Eric Feng,Patrick J. Fox,Marie-Helene Genest,Loukas Gouskos,Johanna Gramling,Ulrich Haisch,Ulrich Haisch,Roni Harnik,Anthony Hibbs,Siewyan Hoh,W. Hopkins,Valerio Ippolito,Thomas Jacques,Felix Kahlhoefer,Valentin V. Khoze,Russell Kirk,Andreas Korn,Khristian Kotov,Shuichi Kunori,Greg Landsberg,Sebastian Liem,Tongyan Lin,Steven Lowette,Robyn Lucas,Robyn Lucas,Luca Malgeri,Sarah Malik,Christopher McCabe,Christopher McCabe,Alaettin Serhan Mete,Enrico Morgante,Stephen Mrenna,Yu Nakahama,Yu Nakahama,Dave M Newbold,Karl Nordström,Priscilla Pani,Michele Papucci,Michele Papucci,Sophio Pataraia,Bjoern Penning,Deborah Pinna,Giacomo Polesello,Davide Racco,Emanuele Re,Antonio Riotto,Thomas G. Rizzo,David Salek,Subir Sarkar,S. Schramm,P. Skubic,Oren Slone,Juri Smirnov,Yotam Soreq,T. J. Sumner,Tim M. P. Tait,Marc Thomas,Marc Thomas,Ian R Tomalin,C. Tunnell,Alessandro Vichi,Tomer Volansky,Neal Weiner,Stephen M. West,Monika Wielers,Steven Worm,Itay Yavin,Itay Yavin,Bryan Zaldivar,Ning Zhou,Kathryn M. Zurek,Kathryn M. Zurek +108 more
TL;DR: In this paper, a set of simplified models for dark matter and its interactions with the Standard Model particles are presented, and the guiding principles underpinning these simplified models are spelled out, and some suggestions for implementation are presented.
Journal ArticleDOI
Simplified Models for Dark Matter Searches at the LHC
Jalal Abdallah,Henrique Araujo,Alexandre Arbey,Alexandre Arbey,Alexandre Arbey,Adi Ashkenazi,Alexander Belyaev,Joshua Berger,Celine Boehm,Antonio Boveia,Amelia Jean Brennan,James John Brooke,Oliver Buchmueller,Matthew R. Buckley,Giorgio Busoni,Lorenzo Calibbi,Lorenzo Calibbi,Sushil Chauhan,Nadir Daci,Gavin Davies,Isabelle De Bruyn,Paul De Jong,Albert De Roeck,Kees de Vries,D. Del Re,Andrea De Simone,Andrea Di Simone,Caterina Doglioni,Matthew J. Dolan,Herbi K. Dreiner,John Ellis,John Ellis,Sarah Catherine Eno,Erez Etzion,Malcolm Fairbairn,Brian Feldstein,Henning Flaecher,Eric Feng,Patrick J. Fox,Marie-Helene Genest,Loukas Gouskos,Johanna Gramling,Ulrich Haisch,Ulrich Haisch,Roni Harnik,Anthony Hibbs,Siewyan Hoh,W. Hopkins,Valerio Ippolito,Thomas Jacques,Felix Kahlhoefer,Valentin V. Khoze,Russell Kirk,Andreas Korn,Khristian Kotov,Shuichi Kunori,Greg Landsberg,Sebastian Liem,Tongyan Lin,Steven Lowette,Robyn Lucas,Robyn Lucas,Luca Malgeri,Sarah Malik,Christopher McCabe,Christopher McCabe,Alaettin Serhan Mete,Enrico Morgante,Stephen Mrenna,Yu Nakahama,Yu Nakahama,Dave M Newbold,Karl Nordström,Priscilla Pani,Michele Papucci,Michele Papucci,Sophio Pataraia,Bjoern Penning,Deborah Pinna,Giacomo Polesello,Davide Racco,Emanuele Re,Antonio Riotto,Thomas G. Rizzo,David Salek,Subir Sarkar,S. Schramm,P. Skubic,Oren Slone,Juri Smirnov,Yotam Soreq,T. J. Sumner,Tim M. P. Tait,Marc Thomas,Marc Thomas,Ian R Tomalin,C. Tunnell,Alessandro Vichi,Tomer Volansky,Neal Weiner,Stephen M. West,Monika Wielers,Steven Worm,Itay Yavin,Itay Yavin,Bryan Zaldivar,Ning Zhou,Kathryn M. Zurek,Kathryn M. Zurek +108 more
TL;DR: In this article, a set of simplified models for dark matter and its interactions with the Standard Model particles are presented, and the guiding principles underpinning these simplified models are spelled out, and some suggestions for implementation are presented.
Journal ArticleDOI
Review of LHC Dark Matter Searches
TL;DR: In this paper, the authors discuss both experimental and theoretical aspects of searches for dark matter at the Large Hadron Collider (LHC) and provide an overview of the various experimental search channels, followed by a summary of different theoretical approaches for predicting dark matter signals.