Being extremely suppressed in the Standard Model, rare decays of heavy-flavoured particles are a powerful probe of New Physics, and allow to reach energies beyond those accessible through direct searches. Several new results have been obtained by the LHC experiments. In particular, $b \to sl^+l^-$ transitions give access to a large spectrum of observables, which provide complementary information on possible New Physics contributions. In this sector, tensions with Standard Model predictions have been observed
Rare decays are excellent tests to infer the presence of physics beyond the Standard Model (BSM), as...
Rare B meson decays are an ideal place to search for the effects of new particles that could arise i...
We have just entered a new round in the testing of the flavour sector of the Standard Model through ...
Rare decays are powerful probes for New Physics effects beyond the Standard Model. These proceedings...
International audienceThe Standard Model (SM) of particle physics is the most advanced theory descri...
International audienceThe Standard Model (SM) of particle physics is the most advanced theory descri...
International audienceThe Standard Model (SM) of particle physics is the most advanced theory descri...
International audienceThe Standard Model (SM) of particle physics is the most advanced theory descri...
I review recent advances in Rare B-meson decays in the context of the standard model. This field is ...
Rare decays of beauty hadrons test the flavour structure of the Standard Model and of other theories...
Rare decays of beauty hadrons test the flavour structure of the Standard Model and of other theories...
Rare decays of beauty hadrons test the flavour structure of the Standard Model and of other theories...
With the completion of Run~I of the CERN Large Hadron Collider, particle physics has entered a new e...
Rare decays are flavour changing neutral current processes that allow sensitive searches for phenome...
In absence of direct signs of new physics at the LHC, rare decays of heavy flavoured particles provi...
Rare decays are excellent tests to infer the presence of physics beyond the Standard Model (BSM), as...
Rare B meson decays are an ideal place to search for the effects of new particles that could arise i...
We have just entered a new round in the testing of the flavour sector of the Standard Model through ...
Rare decays are powerful probes for New Physics effects beyond the Standard Model. These proceedings...
International audienceThe Standard Model (SM) of particle physics is the most advanced theory descri...
International audienceThe Standard Model (SM) of particle physics is the most advanced theory descri...
International audienceThe Standard Model (SM) of particle physics is the most advanced theory descri...
International audienceThe Standard Model (SM) of particle physics is the most advanced theory descri...
I review recent advances in Rare B-meson decays in the context of the standard model. This field is ...
Rare decays of beauty hadrons test the flavour structure of the Standard Model and of other theories...
Rare decays of beauty hadrons test the flavour structure of the Standard Model and of other theories...
Rare decays of beauty hadrons test the flavour structure of the Standard Model and of other theories...
With the completion of Run~I of the CERN Large Hadron Collider, particle physics has entered a new e...
Rare decays are flavour changing neutral current processes that allow sensitive searches for phenome...
In absence of direct signs of new physics at the LHC, rare decays of heavy flavoured particles provi...
Rare decays are excellent tests to infer the presence of physics beyond the Standard Model (BSM), as...
Rare B meson decays are an ideal place to search for the effects of new particles that could arise i...
We have just entered a new round in the testing of the flavour sector of the Standard Model through ...