A long-baseline neutrino diss-appearance experiment wants to measure neutrino oscillations with an expected squared mass difference of approximately Am² = 2.5x10-³ eV2. The neutrino beam energy is 3.7 GeV. Calculate the optimal distance between the near and the far detector in [km]. (Explain your solution in the worked script).

Modern Physics
3rd Edition
ISBN:9781111794378
Author:Raymond A. Serway, Clement J. Moses, Curt A. Moyer
Publisher:Raymond A. Serway, Clement J. Moses, Curt A. Moyer
Chapter14: Nuclear Physics Applications
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A long-baseline neutrino diss-appearance experiment wants to measure neutrino oscillations with an expected squared mass difference of approximately
Am² = 2.5x10-³ eV2. The neutrino beam energy is 3.7 GeV. Calculate the optimal distance between the near and the far detector in [km]. (Explain your solution in
the worked script).
Transcribed Image Text:A long-baseline neutrino diss-appearance experiment wants to measure neutrino oscillations with an expected squared mass difference of approximately Am² = 2.5x10-³ eV2. The neutrino beam energy is 3.7 GeV. Calculate the optimal distance between the near and the far detector in [km]. (Explain your solution in the worked script).
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