Research Article
BibTex RIS Cite

Yüksek Işınlıklı Büyük Hadron Çarpıştırıcısı Bazlı Müon-Proton Çarpıştırıcılarında Uyarılmış Müon Üretimi

Year 2025, Volume: 12 Issue: 2, 630 - 639, 30.11.2025
https://doi.org/10.35193/bseufbd.1558038

Abstract

Bu çalışmada müon+foton son durumuna sahip spin-1/2 uyarılmış müonun Yüksek Işınlıklı Büyük Hadron Çarpıştırıcısı (YI-BHÇ) bazlı müon-proton çarpıştırıcısında üretimi incelenmiştir. Kütle merkezi enerjisi 9,16 TeV ve yıllık ışınlık değeri 15 fb-1 olan μp çarpıştırıcısında, uyarılmış müonların kontak etkileşim yöntemiyle üretilip ayar etkileşimi yöntemiyle fotonlu kanala bozunumu araştırılmıştır. Uyarılmış müon sinyalini ardalandan ayırmak için sinyal-ardalan analizi yapılmıştır. Bu analiz sonucunda belirlenen keşif sınırlamaları uygulanarak YI-BHÇ bazlı müon-proton çarpıştırıcısında uyarılmış müonun kütlesi için keşif, gözlem ve dışarlama limitleri tespit edilmiştir. Bu sonuçlara göre kompozitlik skalasının Λ = m_(μ^* ) değeri için uyarılmış müonlar 6570 GeV’e kadar bu çarpıştırıcıda keşfedilebilecektir.

Thanks

Uşak Üniversitesi, Enerji, Çevre ve Sürdürülebilirlik Uygulama ve Araştırma Merkezi’ne bu çalışmaya verdiği destekten dolayı teşekkür ederiz.

References

  • Aad, G., Abajyan, T., Abdallah, J., Khalek, S. A., Abdelalim, A. A., vd. (2012). Observation of a new particle in the search for the Standard Model Higgs boson with the ATLAS detector at the LHC. Physics Letters B, 716 (1), 1-29.
  • Chatrchyan, S., Khachatryan, V., Sirunyan, A.M., Tumasyan, A., Adam, W., vd. (2012). Observation of a new boson at a mass of 125 GeV with the CMS experiment at the LHC. Physics Letters B, 716 (1), 30-61.
  • Pati, J. C., Salam, A. (1974). Lepton number as the fourth color. Physical Review D,10, 275-289.
  • Pati, J. C., Salam, A., Strathdee, J. A. (1975). Are quarks composite?. Physics Letters B, 59 (3), 265-268.
  • Harari, H. (1979). A schematic model of quarks and leptons. Physics Letters B, 86 (1), 83-86.
  • Shupe, M. A. (1979). A composite model of leptons and quarks. Physics Letters B, 86 (1), 87-92.
  • Terazawa, H., Chikashige, Y., Akama, K. (1977). Unified model of the Nambu-Jona-Lasinio type for all elementary-particle forces. Physical Review D, 15 (2), 480-487.
  • Terazawa, H. (1980). Subquark model of leptons and quarks. Physical Review D, 22 (1), 184-199.
  • Terazawa, H., Yaseu, M., Akama, K., Hayashi, M. (1982). Observable effects of the possible sub-structure of leptons and quarks. Physics Letters B, 112 (4-5), 387-392.
  • Terazawa, H. (1983). A fundamental theory of composite particles and fields. Physics Letters B, 133 (1-2), 57-60.
  • Fritzsch, H., Mandelbaum, G. (1981). Weak interactions as manifestations of the substructure of leptons and quarks. Physics Letters B, 102 (5), 319-322.
  • Lyons, L. (1983). An introduction to the possible substructure of quarks and leptons. Progress in Particle and Nuclear Physics, 10, 227-304.
  • Eichten, E. J., Lane, K. D., Peskin, M. E. (1983). New tests for quark and lepton substructure. Physical Review Letters, 50, 811-814.
  • D’Souza, I. A., Kalman, C. S. (1992). Preons: Model of leptons, quarks, and gauge bosons as composite objects. World Scientific, Singapore, 120.
  • Çelikel, A., Kantar, M., Sultansoy, S. (1998). A search for sextet quarks and leptogluons at the LHC. Physics Letters B, 443 (1-4), 359-364.
  • Terazawa, H., Yasue, M. (2014). Composite higgs boson in the unified subquark model of all fundamental particles and forces. Journal of Modern Physics, 5 (5), 205-208.
  • Terazawa, H., Yasue M. (2016). Excited gauge and higgs bosons in the unified composite model. Nonlinear Phenomena in Complex Systems. 19 (1), 1-6.
  • Fritzsch, H. (2016). Composite weak bosons at the large hadronic collider. Modern Physics Letters A, 31 (20), 1630019.
  • Kaya, Ü., Öner, B. B., Sultanov, S. (2018). A minimal fermion-scalar preonic model. Turkish Journal of Physics, 42 (3), 235-241.
  • Low, F. E. (1965). Heavy electrons and muons. Physical Review Letters, 14, 238-239.
  • Renard, F. M. (1983). Excited quarks and new hadronic states. II Nuova Cimento A, 77 (1), 1-20.
  • Rujula, A., Maiani, L., Petronzio, R. (1984). Search for excited quarks. Physics Letters B, 140 (3-4), 253- 258.
  • Kühn, J., Zerwas, P. (1984). Excited quarks and leptons. Physics Letters B, 147 (1-3), 189-196.
  • Tosa, Y., Marshak, R. E. (1985). Exotic fermions. Physical Review D, 32 (3), 774-780.
  • Cakir, O., Mehdiyev, R. R. (1999). Excited quark production at the CERN LHC. Physical Review D, 60 (3), 032004.
  • Cakir, O., Leroy, C., Mehdiyev, R. R. (2000). Search for excited quarks with the ATLAS experiments at the CERN LHC: Double jets channel. Physical Review D, 62 (11), 114018.
  • Cakir, O., Leroy, C., Mehdiyev, R. R. (2001). Search for excited quarks with the ATLAS experiments at the CERN LHC: W/Z+ channel. Physical Review D, 63 (9), 094014.
  • Eboli, O. J. P., Lietti, S. M., Mathews, P. (2002). Excited leptons at the CERN large hadron collider. Physical Review D, 65 (7), 075003.
  • Cakir, O., Yilmaz, A., Sultansoy, S. (2004). Single production of excited electrons at future e-e+, ep and pp colliders. Physical Review D, 70 (7), 075011.
  • Çakır, O., Ozansoy, A. (2008). Search for excited spin-3/2 and spin-1/2 leptons at linear colliders. Physical Review D, 77 (3), 035002.
  • Caliskan, A. (2017). Excited neutrino search potential of the FCC-based electron-hadron colliders. Advance in High Energy Physics, 2017, 4726050.
  • Caliskan, A., Kara, S. O., ve Ozansoy, A. (2017). Excited muon searches at the FCC-based muon-hadron colliders. Advances in High Energy Physics, 2017, 1540243.
  • Caliskan, A. (2018). Single production of the excited muons at the SPPC-based ultimate µp collider. Turkish Journal of Physics, 42 (4), 343-349.
  • Caliskan, A. (2019). Search for excited muons at the future SPPC-based muon-proton colliders. Acta Physica Polonica B, 50, 1409-1422.
  • Caliskan, A. (2020). Single production of composite electrons at the future SPPC-based lepton-hadron colliders. Canadian Journal of Physics, 98 (4), 1-21.
  • Caliskan, A., ve Kara, S. O. (2018). Single production of the excited electrons in the future FCC-based lepton-hadron colliders. International Journal of Modern Physics A, 33 (24) 1850141.
  • Günaydin, Y. O., Sahin, M., ve Sultansoy, S. (2018). Resonance production of excited u quark at FCC-based γp colliders. Acta Physica Polonica B, 10 (49), 1763-1779.
  • Sahin, M., Aydin, G., ve Günaydin, Y. O. (2019). Excited quarks production at FCC and SppC pp colliders. International Journal of Modern Physics A, 34 (29), 1950169.
  • Sahin, M., ve Caliskan, A. (2023). Excited muon production in muon colliders via contact interaction. Journal of Physics G: Nuclear and Particle Physics, 50 (2), 025002.
  • Akay, A. N., Günaydin, Y. O., Sahin, M., ve Sultansoy, S. (2019). Search for excited u and d quarks in dijet final states at future pp colliders. Advances in High Energy Physics, 2019, 9090785.
  • Hagiwara, K., Komamiya, S., Zeppenfeld, D. (1985). Excited lepton production at LEP and HERA. Zeitschrift für Physik C – Particles and Fields, 29, 115-122.
  • Adloff, C., Andreev, V., Andrieu, B., Arkadov, V., Astvatsatourov, A., vd. (2000). A search for excited fermions at HERA. The European Physical Journal C, 17, 567-581.
  • Chekanov, S., Derrick, M., Krakauer, D., Magill, S., Musgrave, B., vd. (2002). Searches for excited fermions in ep collisions at HERA. Physics Letters B, 549 (1-2), 32-47.
  • Chatrchyan, S., Khachatryan, V., Sirunyan, A. M., Tumasyan, A., Adam, W., vd. (2011). Search for resonances in the dijet mass spectrum from 7 TeV pp collision at CMS. Physics Letters B, 704 (3), 123-142.
  • Aad. G., Abajyan, T., Abbott, B., Abdallah, J., Khalek, S. A., vd. (2014). Search for new phenomena in photon+jet events collected in proton-proton collisions at √s = 8 TeV with the ATLAS detector. Physics Letters B, 728, 562-578.
  • Acciarri, M., Achard, P., Adriani, O., Benitez, M. A., Alcaraz, J., vd. (2001). Search for excited leptons in e+e- interactions at s=192-202 GeV. Physics Letters B, 502 (1-4), 37-50.
  • Khachatryan, V., Sirunyan, A. M., Tumasyan, A., Adam, W., Bergauer, T., vd. (2014). Search for excited quarks in the γ + jet final state in proton-proton collisions at √s = 8 TeV. Physics Letters B, 738, 274-293.
  • Sirunyan, A. M., Tumasyan, A., Adam, W., Ambrogi, F., Asilar, E., vd. (2019). Search for excited leptons in llγ final states in proton-proton collisions at √s = 13 TeV. Journal of High Energy Physics, 2019 (15), 1-36.
  • Sirunyan, A. M., Tumasyan, A., Adam, W., Ambrogi, F., Bergauer, T., vd. (2020). Search for an excited lepton that decays via a contact interaction to a lepton and two jets in proton-proton collisions at √s = 13 TeV. Journal of High Energy Physics, 2020 (52), 1-39.
  • Alonso, I. B., Brüning, O., Fessia, P., Lamont, M., Rossi, L., Tavian, L., Zerlauth, M. (2020). Vol. 10: High-Luminosity Large Hadron Collider (HL-LHC). Technical Design Report. Geneva, CERN.
  • Benedikt, M., Schulte, D., Ziemmermann, F. (2015). Optimizing integrated luminosity of future hadron colliders. Physical Review Accelerators and Beams, 18 (10), 101002.
  • Ketenoğlu, B., Dağlı, B., Öztürk, A., Sultansoy, S. (2022). Review of muon-proton and muon-nucleus collider proposals. Modern Physics Letters A, 37 (38), 2230013.
  • Baur, U., Spira, M., Zerwas, P. M. (1990). Excited-quark and -lepton production at hadron colliders. Physical Review D, 42 (3), 815-824.
  • Belyaev, A., Christensen, N. D., Pukhov, A. (2013). CalcHEP 3.4 for collider physics within and beyond the Standard Model. Computer Physics Communications, 184, 1729-1769.
  • Semenov, A. (2016). LanHEP – A package for automatic generation of Feynman rules from the Lagrangian version 3.2. Computer Physics Communications, 201, 167-170.
  • Lai, H. L., Guzzi, M., Huston, J., Li, Z., Nadolsky, P. M., Pumplin, J., Yuan, C. P. (2010). New parton distributions for collider physics. Physical Review D, 82 (7), 074024.
  • Cowan, G., Cranmer, K., Gross, E., Vitells, O. (2011). Asymptotic formulae for likelihood-based tests of new physics. The European Physical Journal C, 71 (1554), 1-19.

Excited Muon Production at High Luminosity Large Hadron Collider-Based Muon-Proton Colliders

Year 2025, Volume: 12 Issue: 2, 630 - 639, 30.11.2025
https://doi.org/10.35193/bseufbd.1558038

Abstract

In this study, we investigated the production of spin-1/2 excited muons with a muon+photon final state at a High Luminosity Large Hadron Collider (HL-LHC) - based muon - proton collider. In the μp collider, which has a center of mass energy of 9.16 TeV and an annual luminosity of 15 fb-1, the production of excited muons by the contact interaction method and their decay into the photon channel by the gauge interaction method were investigated. Signal–background analysis was performed to separate the excited muon signals from the background. By applying the discovery cuts determined as a result of this analysis, the discovery, observation, and exclusion limits for the mass of the excited muon in the HL-LHC-based muon-proton collider were determined. According to these results, for Λ = m_(μ^* ), excited muons can be discovered up to 6570 GeV at this collider.

Thanks

We would like to thank Uşak University, Energy, Environment and Sustainability Application and Research Center for their support of this study.

References

  • Aad, G., Abajyan, T., Abdallah, J., Khalek, S. A., Abdelalim, A. A., vd. (2012). Observation of a new particle in the search for the Standard Model Higgs boson with the ATLAS detector at the LHC. Physics Letters B, 716 (1), 1-29.
  • Chatrchyan, S., Khachatryan, V., Sirunyan, A.M., Tumasyan, A., Adam, W., vd. (2012). Observation of a new boson at a mass of 125 GeV with the CMS experiment at the LHC. Physics Letters B, 716 (1), 30-61.
  • Pati, J. C., Salam, A. (1974). Lepton number as the fourth color. Physical Review D,10, 275-289.
  • Pati, J. C., Salam, A., Strathdee, J. A. (1975). Are quarks composite?. Physics Letters B, 59 (3), 265-268.
  • Harari, H. (1979). A schematic model of quarks and leptons. Physics Letters B, 86 (1), 83-86.
  • Shupe, M. A. (1979). A composite model of leptons and quarks. Physics Letters B, 86 (1), 87-92.
  • Terazawa, H., Chikashige, Y., Akama, K. (1977). Unified model of the Nambu-Jona-Lasinio type for all elementary-particle forces. Physical Review D, 15 (2), 480-487.
  • Terazawa, H. (1980). Subquark model of leptons and quarks. Physical Review D, 22 (1), 184-199.
  • Terazawa, H., Yaseu, M., Akama, K., Hayashi, M. (1982). Observable effects of the possible sub-structure of leptons and quarks. Physics Letters B, 112 (4-5), 387-392.
  • Terazawa, H. (1983). A fundamental theory of composite particles and fields. Physics Letters B, 133 (1-2), 57-60.
  • Fritzsch, H., Mandelbaum, G. (1981). Weak interactions as manifestations of the substructure of leptons and quarks. Physics Letters B, 102 (5), 319-322.
  • Lyons, L. (1983). An introduction to the possible substructure of quarks and leptons. Progress in Particle and Nuclear Physics, 10, 227-304.
  • Eichten, E. J., Lane, K. D., Peskin, M. E. (1983). New tests for quark and lepton substructure. Physical Review Letters, 50, 811-814.
  • D’Souza, I. A., Kalman, C. S. (1992). Preons: Model of leptons, quarks, and gauge bosons as composite objects. World Scientific, Singapore, 120.
  • Çelikel, A., Kantar, M., Sultansoy, S. (1998). A search for sextet quarks and leptogluons at the LHC. Physics Letters B, 443 (1-4), 359-364.
  • Terazawa, H., Yasue, M. (2014). Composite higgs boson in the unified subquark model of all fundamental particles and forces. Journal of Modern Physics, 5 (5), 205-208.
  • Terazawa, H., Yasue M. (2016). Excited gauge and higgs bosons in the unified composite model. Nonlinear Phenomena in Complex Systems. 19 (1), 1-6.
  • Fritzsch, H. (2016). Composite weak bosons at the large hadronic collider. Modern Physics Letters A, 31 (20), 1630019.
  • Kaya, Ü., Öner, B. B., Sultanov, S. (2018). A minimal fermion-scalar preonic model. Turkish Journal of Physics, 42 (3), 235-241.
  • Low, F. E. (1965). Heavy electrons and muons. Physical Review Letters, 14, 238-239.
  • Renard, F. M. (1983). Excited quarks and new hadronic states. II Nuova Cimento A, 77 (1), 1-20.
  • Rujula, A., Maiani, L., Petronzio, R. (1984). Search for excited quarks. Physics Letters B, 140 (3-4), 253- 258.
  • Kühn, J., Zerwas, P. (1984). Excited quarks and leptons. Physics Letters B, 147 (1-3), 189-196.
  • Tosa, Y., Marshak, R. E. (1985). Exotic fermions. Physical Review D, 32 (3), 774-780.
  • Cakir, O., Mehdiyev, R. R. (1999). Excited quark production at the CERN LHC. Physical Review D, 60 (3), 032004.
  • Cakir, O., Leroy, C., Mehdiyev, R. R. (2000). Search for excited quarks with the ATLAS experiments at the CERN LHC: Double jets channel. Physical Review D, 62 (11), 114018.
  • Cakir, O., Leroy, C., Mehdiyev, R. R. (2001). Search for excited quarks with the ATLAS experiments at the CERN LHC: W/Z+ channel. Physical Review D, 63 (9), 094014.
  • Eboli, O. J. P., Lietti, S. M., Mathews, P. (2002). Excited leptons at the CERN large hadron collider. Physical Review D, 65 (7), 075003.
  • Cakir, O., Yilmaz, A., Sultansoy, S. (2004). Single production of excited electrons at future e-e+, ep and pp colliders. Physical Review D, 70 (7), 075011.
  • Çakır, O., Ozansoy, A. (2008). Search for excited spin-3/2 and spin-1/2 leptons at linear colliders. Physical Review D, 77 (3), 035002.
  • Caliskan, A. (2017). Excited neutrino search potential of the FCC-based electron-hadron colliders. Advance in High Energy Physics, 2017, 4726050.
  • Caliskan, A., Kara, S. O., ve Ozansoy, A. (2017). Excited muon searches at the FCC-based muon-hadron colliders. Advances in High Energy Physics, 2017, 1540243.
  • Caliskan, A. (2018). Single production of the excited muons at the SPPC-based ultimate µp collider. Turkish Journal of Physics, 42 (4), 343-349.
  • Caliskan, A. (2019). Search for excited muons at the future SPPC-based muon-proton colliders. Acta Physica Polonica B, 50, 1409-1422.
  • Caliskan, A. (2020). Single production of composite electrons at the future SPPC-based lepton-hadron colliders. Canadian Journal of Physics, 98 (4), 1-21.
  • Caliskan, A., ve Kara, S. O. (2018). Single production of the excited electrons in the future FCC-based lepton-hadron colliders. International Journal of Modern Physics A, 33 (24) 1850141.
  • Günaydin, Y. O., Sahin, M., ve Sultansoy, S. (2018). Resonance production of excited u quark at FCC-based γp colliders. Acta Physica Polonica B, 10 (49), 1763-1779.
  • Sahin, M., Aydin, G., ve Günaydin, Y. O. (2019). Excited quarks production at FCC and SppC pp colliders. International Journal of Modern Physics A, 34 (29), 1950169.
  • Sahin, M., ve Caliskan, A. (2023). Excited muon production in muon colliders via contact interaction. Journal of Physics G: Nuclear and Particle Physics, 50 (2), 025002.
  • Akay, A. N., Günaydin, Y. O., Sahin, M., ve Sultansoy, S. (2019). Search for excited u and d quarks in dijet final states at future pp colliders. Advances in High Energy Physics, 2019, 9090785.
  • Hagiwara, K., Komamiya, S., Zeppenfeld, D. (1985). Excited lepton production at LEP and HERA. Zeitschrift für Physik C – Particles and Fields, 29, 115-122.
  • Adloff, C., Andreev, V., Andrieu, B., Arkadov, V., Astvatsatourov, A., vd. (2000). A search for excited fermions at HERA. The European Physical Journal C, 17, 567-581.
  • Chekanov, S., Derrick, M., Krakauer, D., Magill, S., Musgrave, B., vd. (2002). Searches for excited fermions in ep collisions at HERA. Physics Letters B, 549 (1-2), 32-47.
  • Chatrchyan, S., Khachatryan, V., Sirunyan, A. M., Tumasyan, A., Adam, W., vd. (2011). Search for resonances in the dijet mass spectrum from 7 TeV pp collision at CMS. Physics Letters B, 704 (3), 123-142.
  • Aad. G., Abajyan, T., Abbott, B., Abdallah, J., Khalek, S. A., vd. (2014). Search for new phenomena in photon+jet events collected in proton-proton collisions at √s = 8 TeV with the ATLAS detector. Physics Letters B, 728, 562-578.
  • Acciarri, M., Achard, P., Adriani, O., Benitez, M. A., Alcaraz, J., vd. (2001). Search for excited leptons in e+e- interactions at s=192-202 GeV. Physics Letters B, 502 (1-4), 37-50.
  • Khachatryan, V., Sirunyan, A. M., Tumasyan, A., Adam, W., Bergauer, T., vd. (2014). Search for excited quarks in the γ + jet final state in proton-proton collisions at √s = 8 TeV. Physics Letters B, 738, 274-293.
  • Sirunyan, A. M., Tumasyan, A., Adam, W., Ambrogi, F., Asilar, E., vd. (2019). Search for excited leptons in llγ final states in proton-proton collisions at √s = 13 TeV. Journal of High Energy Physics, 2019 (15), 1-36.
  • Sirunyan, A. M., Tumasyan, A., Adam, W., Ambrogi, F., Bergauer, T., vd. (2020). Search for an excited lepton that decays via a contact interaction to a lepton and two jets in proton-proton collisions at √s = 13 TeV. Journal of High Energy Physics, 2020 (52), 1-39.
  • Alonso, I. B., Brüning, O., Fessia, P., Lamont, M., Rossi, L., Tavian, L., Zerlauth, M. (2020). Vol. 10: High-Luminosity Large Hadron Collider (HL-LHC). Technical Design Report. Geneva, CERN.
  • Benedikt, M., Schulte, D., Ziemmermann, F. (2015). Optimizing integrated luminosity of future hadron colliders. Physical Review Accelerators and Beams, 18 (10), 101002.
  • Ketenoğlu, B., Dağlı, B., Öztürk, A., Sultansoy, S. (2022). Review of muon-proton and muon-nucleus collider proposals. Modern Physics Letters A, 37 (38), 2230013.
  • Baur, U., Spira, M., Zerwas, P. M. (1990). Excited-quark and -lepton production at hadron colliders. Physical Review D, 42 (3), 815-824.
  • Belyaev, A., Christensen, N. D., Pukhov, A. (2013). CalcHEP 3.4 for collider physics within and beyond the Standard Model. Computer Physics Communications, 184, 1729-1769.
  • Semenov, A. (2016). LanHEP – A package for automatic generation of Feynman rules from the Lagrangian version 3.2. Computer Physics Communications, 201, 167-170.
  • Lai, H. L., Guzzi, M., Huston, J., Li, Z., Nadolsky, P. M., Pumplin, J., Yuan, C. P. (2010). New parton distributions for collider physics. Physical Review D, 82 (7), 074024.
  • Cowan, G., Cranmer, K., Gross, E., Vitells, O. (2011). Asymptotic formulae for likelihood-based tests of new physics. The European Physical Journal C, 71 (1554), 1-19.
There are 57 citations in total.

Details

Primary Language Turkish
Subjects Nuclear Physics
Journal Section Research Article
Authors

Abdullatif Çalışkan 0000-0001-5485-6881

Mehmet Şahin 0000-0001-6777-3938

Publication Date November 30, 2025
Submission Date October 2, 2024
Acceptance Date January 26, 2025
Published in Issue Year 2025 Volume: 12 Issue: 2

Cite

APA Çalışkan, A., & Şahin, M. (2025). Yüksek Işınlıklı Büyük Hadron Çarpıştırıcısı Bazlı Müon-Proton Çarpıştırıcılarında Uyarılmış Müon Üretimi. Bilecik Şeyh Edebali Üniversitesi Fen Bilimleri Dergisi, 12(2), 630-639. https://doi.org/10.35193/bseufbd.1558038