fbpx Neutrino OPERA experiments | Science in the net

Neutrino OPERA experiments

Primary tabs

Read time: 3 mins

After 3 years of data taking in the CNGS neutrino beam from CERN with the OPERA detector at LNGS, and several months of analysis and checks, a really unexpected result has come out last week: the time of flight of CNGS neutrinos detected by OPERA appears to be shorter by 20 parts per million as compared to that of light. The researchers, after a careful scrutiny of statistical and systematical errors have decided to publicize this astonishing anomaly with a series of seminars and with a paper recently appeared on the archives. The goal is to go along with a broader evaluation of the community with the hope of collecting ideas, proposals and eventually to trigger independent measurements for the understanding of the effect, and hopefully to lead to its confirmation.

The OPERA detector at LNGS was designed for the study of neutrino oscillations in appearance mode, but it is also well suited to provide a precision measurement of the neutrino velocity over the 730 km baseline of the CNGS neutrino beam sent from CERN to LNGS through the Earth’s crust. A time of flight measurement with small systematic uncertainties was made possible by a series of accurate metrology techniques to which contributed various specialized European institutes. The data analysis was based on a large sample of about 16000 neutrino interaction events detected by OPERA. The sensitivity of the measurement of (v-c)/c is about one order of magnitude better than previous accelerator neutrino experiments, notably the MINOS experiment in the NuMI beam from Fermilab. Just to give a feeling of the level of accuracy reached by the researchers, the baseline of nearly 730 km was determined with a global uncertainty of 20 cm, while the time of flight measurement is affected by a total error of ~10 ns.

The results indicate for CNGS muon neutrinos with an average energy of 17 GeV an early neutrino arrival time with respect to the one computed by assuming the speed of light in vacuum of (60.7 ± 6.9 (stat.) ± 7.4 (sys.)) ns. If we transform this measurement into a relative difference of the muon neutrino velocity with respect to the speed of light one obtains: (v-c)/c = (2.48 ± 0.28 (stat.) ± 0.30 (sys.)) ×10-5, with an overall significance of 6.0 σ. The dependence of this time anticipation on the neutrino energy was also investigated yielding a negative result, within the statistical errors.

Despite the large significance of the measurement, the confidence of the Collaboration on the data analysis, and the many check conducted to look for instrumental effects and systematic errors, there is a potentially great impact on physics that motivates and justifies great care and prudence. For this reason, on the one hand the OPERA researchers will continue their studies aimed the investigation of possible still unknown systematic effects that could explain the observed anomaly, and on the other hand, they will improve their measurement by increasing the statistics and by trying to have a better assessment of the present systematic errors.


Scienza in rete è un giornale senza pubblicità e aperto a tutti per garantire l’indipendenza dell’informazione e il diritto universale alla cittadinanza scientifica. Contribuisci a dar voce alla ricerca sostenendo Scienza in rete. In questo modo, potrai entrare a far parte della nostra comunità e condividere il nostro percorso. Clicca sul pulsante e scegli liberamente quanto donare! Anche una piccola somma è importante. Se vuoi fare una donazione ricorrente, ci consenti di programmare meglio il nostro lavoro e resti comunque libero di interromperla quando credi.


prossimo articolo

My Portrait of Anthony Fauci

Anthony Fauci, at 85, has been called to testify before the Senate committee investigating the origins of the Covid-19 pandemic, in what feels like a settling of scores by the very party that, at the time, was recommending chloroquine as a defence. The eminent physician is once again at the centre of controversy, not least for choosing to invoke the Fifth Amendment rather than answer questions. Guido Poli, immunologist at the San Raffaele Hospital and president of Patto Trasversale per la Scienza, who worked with him for many years, recalls in this article Tony Fauci's battles in the history of American and international public health, from AIDS to the pandemic. The image is taken from the footage (public domain) of A. Fauci's hearing on 29 July 2026 before the Senate Homeland Security and Governmental Affairs Committee.

In recent days, Anthony (“Tony”) Fauci has once again become a prominent figure in the international media, and to some extent in Italy as well. As the physician-scientist who has played one of the leading roles in U.S. public health over the past several decades, he became known throughout the world during the darkest days of the COVID-19 pandemic. Having had the privilege and good fortune to work with him from 1986 to 1993, I would like to offer my personal account of the scientist and the man.