Updated physics performance of the ESSnuSB experiment
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Published:2021-12
Issue:12
Volume:81
Page:
-
ISSN:1434-6044
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Container-title:The European Physical Journal C
-
language:en
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Short-container-title:Eur. Phys. J. C
Author:
Alekou A., Baussan E., Blaskovic Kraljevic N., Blennow M., Bogomilov M., Bouquerel E., Burgman A., Carlile C. J., Cederkall J., Christiansen P., Collins M., Cristaldo Morales E., D’Alessi L., Danared H., de André J. P. A. M., Delahaye J. P., Dracos M., Efthymiopoulos I., Ekelöf T., Eshraqi M., Fanourakis G., Fernandez-Martinez E., Folsom B., Ghosh M., Gokbulut G., Halić L., Kayis Topaksu A., Kliček B.ORCID, Krhač K., Lindroos M., Mezzetto M., Oglakci M., Ohlsson T., Olvegård M., Ota T., Park J., Petkov G., Poussot P., Rosauro-Alcaraz S., Stavropoulos G., Stipčević M., Terranova F., Thomas J., Tolba T., Tsenov R., Vankova-Kirilova G., Vassilopoulos N., Wildner E., Wurtz J., Zormpa O., Zou Y.
Abstract
AbstractIn this paper, we present the physics performance of the ESSnuSB experiment in the standard three flavor scenario using the updated neutrino flux calculated specifically for the ESSnuSB configuration and updated migration matrices for the far detector. Taking conservative systematic uncertainties corresponding to a normalization error of $$5\%$$
5
%
for signal and $$10\%$$
10
%
for background, we find that there is $$10\sigma $$
10
σ
$$(13\sigma )$$
(
13
σ
)
CP violation discovery sensitivity for the baseline option of 540 km (360 km) at $$\delta _\mathrm{CP} = \pm 90^\circ $$
δ
CP
=
±
90
∘
. The corresponding fraction of $$\delta _\mathrm{CP}$$
δ
CP
for which CP violation can be discovered at more than $$5 \sigma $$
5
σ
is $$70\%$$
70
%
. Regarding CP precision measurements, the $$1\sigma $$
1
σ
error associated with $$\delta _\mathrm{CP} = 0^\circ $$
δ
CP
=
0
∘
is around $$5^\circ $$
5
∘
and with $$\delta _\mathrm{CP} = -90^\circ $$
δ
CP
=
-
90
∘
is around $$14^\circ $$
14
∘
$$(7^\circ )$$
(
7
∘
)
for the baseline option of 540 km (360 km). For hierarchy sensitivity, one can have $$3\sigma $$
3
σ
sensitivity for 540 km baseline except $$\delta _\mathrm{CP} = \pm 90^\circ $$
δ
CP
=
±
90
∘
and $$5\sigma $$
5
σ
sensitivity for 360 km baseline for all values of $$\delta _\mathrm{CP}$$
δ
CP
. The octant of $$\theta _{23}$$
θ
23
can be determined at $$3 \sigma $$
3
σ
for the values of: $$\theta _{23} > 51^\circ $$
θ
23
>
51
∘
($$\theta _{23} < 42^\circ $$
θ
23
<
42
∘
and $$\theta _{23} > 49^\circ $$
θ
23
>
49
∘
) for baseline of 540 km (360 km). Regarding measurement precision of the atmospheric mixing parameters, the allowed values at $$3 \sigma $$
3
σ
are: $$40^\circ< \theta _{23} < 52^\circ $$
40
∘
<
θ
23
<
52
∘
($$42^\circ< \theta _{23} < 51.5^\circ $$
42
∘
<
θ
23
<
51
.
5
∘
) and $$2.485 \times 10^{-3}$$
2.485
×
10
-
3
eV$$^2< \varDelta m^2_{31} < 2.545 \times 10^{-3}$$
2
<
Δ
m
31
2
<
2.545
×
10
-
3
eV$$^2$$
2
($$2.49 \times 10^{-3}$$
2.49
×
10
-
3
eV$$^2< \varDelta m^2_{31} < 2.54 \times 10^{-3}$$
2
<
Δ
m
31
2
<
2.54
×
10
-
3
eV$$^2$$
2
) for the baseline of 540 km (360 km).
Funder
European Commission Sponsoring Consortium for Open Access Publishing in Particle Physics
Publisher
Springer Science and Business Media LLC
Subject
Physics and Astronomy (miscellaneous),Engineering (miscellaneous)
Reference39 articles.
1. E. Baussan et al., A very intense neutrino super beam experiment for leptonic CP violation discovery based on the European spallation source linac. Nucl. Phys. B 885, 127–149 (2014). arXiv:1309.7022 2. E. Wildner et al., The opportunity offered by the ESSnuSB project to exploit the larger leptonic CP violation signal at the second oscillation maximum and the requirements of this project on the ESS accelerator complex. Adv. High Energy Phys. 2016, 8640493 (2016). arXiv:1510.00493 3. H. Nunokawa, S.J. Parke, J.W.F. Valle, CP violation and neutrino oscillations. Prog. Part. Nucl. Phys. 60, 338–402 (2008). arXiv:0710.0554 4. P. Coloma, E. Fernandez-Martinez, Optimization of neutrino oscillation facilities for large $$\theta _{13}$$. JHEP 04, 089 (2012). arXiv:1110.4583 5. S. Parke, Neutrinos: theory and phenomenology. Phys. Scr. T 158, 014013 (2013). arXiv:1310.5992
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