Pembangkitan Massa Partikel Neutrino dengan Fermion Triplet Melalui Mekanisme Seesaw Tipe III

Authors

  • Ety Kurniati Universitas Palangka Raya
  • Kadek Ayu Cintya Adelia Universitas Palangka Raya
  • Arifin Achmad Universitas Jenderal Soedirman
  • Luqman Hakim Universitas Palangka Raya

DOI:

https://doi.org/10.59632/magnetic.v5i2.626

Keywords:

Model Standar, Neutrino, Mekanisme Seesaw, Fermion Triplet

Abstract

Neutrino merupakan partikel yang sangat ringan, tidak memiliki muatan dan interaksi dengan materi lainnya sangat lemah. Massa partikel neutrino dalam pembahasan ini dibangkitkan dengan fermion triple melalui mekanisme seesaw III. Mekanisme Seesaw merupakan salah satu mekanisme untuk membangkitkan massa partikel neutrino yang tidak tercakup dalam Model Standar (MS) fisika partikel.  Hal ini berarti bahwa mekanisme seesaw merupakan alternatif dari MS. Kajian dalam artikel ini bersifat teoritis dan didukung oleh studi literatur. Massa partikel neutrino dapat terbentuk secara konsisten dengan menganalisis peran fermion triplet dalam Lagrangian menggunakan mekanisme Seesaw tipe III.  

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References

[1] S. Chatrchyan et al. (2012), “Observation of a new boson at a mass of 125 GeV with the CMS experiment at the LHC,” Physics Letters B, vol. 716, no. 1, pp. 30–61, doi: 10.1016/j.physletb.2012.08.021.

[2] G. Aad et al. (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, vol. 716, no. 1, pp. 1–29, doi: 10.1016/j.physletb.2012.08.020.

[3] S. L. Glashow (1961), “PARTIAL-SYMMETRIES OF WEAK INTERACTIONS,” Nuclear physics 22.4 (1961): 579-588.

[4] S. Weinber (1967), “A MODEL OF LEPTONS”, Physics Review Letters, vol.19, no.21, 10.1103/PhysRevLett.19.1264.

[5] J.C. Ward and A. Salam (1959), “Weak and Electromagnetic Interactions,” IL NUOVO CIMENTO, vol.11, no.4.

[6] S. Putra Zega and H. Gulo (2024), “ANALISIS LITERATUR FISIKA NUKLIR DAN PENGEMBANGAN REAKTOR FUSI”, IDENTIK: Jurnal Ilmu Ekonomi, Pendidikan dan Teknik, vol.1, no.3.

[7] B. Pontecorvo (1957), “Inverse beta processes and nonconservation of lepton charge,” Zh. Eksp. Teor. Fiz, vol. 34, p. 247.

[8] et al. Z. Maki (1962), “Remarks on the Unified Model of Elementary Particles,” Progress of Theoretical Physics, vol. 28, pp. 870–880.

[9] B. Pontecorvo (1967), “Neutrino Experiments and the Problem of Conservation of Leptonic Charge,” Zh. Eksp. Teor. Fiz, vol. 53, pp. 1717–1725.

[10] Y. Abe et al. (2012)“Indication of reactor ν ̄e disappearance in the double chooz experiment,” Phys Rev Lett, vol. 108, no. 13, doi: 10.1103/PhysRevLett.108.131801.

[11] F. P. An et al. (2012), “Observation of electron-antineutrino disappearance at Daya Bay,” Phys Rev Lett, vol. 108, no. 17, doi: 10.1103/PhysRevLett.108.171803.

[12] D. V. Forero, M. Tortola, and J. W. F. Valle (2014), “Neutrino oscillations refitted,” doi: 10.1103/PhysRevD.90.093006.

[13] Maki, et. al. (1962), “Remarks on the unified model of elementary particles,” Prog. Theor. Phys, vol. 28, p. 870.

[14] Mona, et. al.(2018), “Updated global analysis of neutrino oscillationsin the presence of eV-scale sterile neutrinos,” JHEP, doi: https://doi.org/10.1007/JHEP08(2018)010.

[15] Gonzales, et.al. (2008), “Phenomenology with Massive Neutrino,” Physics Reports 460.1-3 (2008): 1-129.

[16] Abe, K., et.al. (2011), “Solar neutrino results in Super-Kamiokande-III,” Physical Review D, vol. 83, doi: http://dx.doi.org/10.1103/PhysRevD.83.052010.

[17] Ashie, Y. et al. (2005), “Measurement of atmospheric neutrino oscillation parameters by Super-Kamiokande I,” Physical Review D, vol. 71, doi: https://doi.org/10.1103/PhysRevD.71.112005.

[18] D. J. Griffiths (2008), Introduction to Elementary Particles. New York.: JohnWilley & Sons.

[19] KA. Olive et al. (2014), “Review of particle physics,” Chin. Phys, vol. 38, no.9. doi: 10.1088/1674-1137/38/9/090001.

[20] Sallas et. al.(2018), “Status of neutrino oscillations 2018: first hint for normal mass ordering and improved CP sensitivity,” JHEP, vol.782, Pages 633-640 , doi: https://doi.org/10.1016/j.physletb.2018.06.019.

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Published

2025-09-08

How to Cite

Pembangkitan Massa Partikel Neutrino dengan Fermion Triplet Melalui Mekanisme Seesaw Tipe III. (2025). Magnetic: Research Journal of Physics and It’s Application, 5(2), 455-461. https://doi.org/10.59632/magnetic.v5i2.626