Atomic parity violation (APV) experiments are sensitive probes of the electroweak interaction at low energy. These experiments are competitive with and complementary to high-energy collider experiments. The APV signal is strongly enhanced in heavy atoms, and it is measurable by exciting suppressed (M1, E2) transitions. The predicted enhancement factor of the APV effect in the S-D transition in Ra(+) is about 50 times larger than the S-S transition in neutral Cs. However, certain spectroscopic information on Ra+, needed to constrain the required atomic many-body theory, was lacking. Using the AGOR cyclotron and the TRI mu P facility at KVI in Groningen, short-lived (212-214)Ra(+) ions were produced and trapped. First ever excited-state laser...
Atomic parity violation (APV) experiments are sensitive probes of the electroweak interaction at low...
A single trapped Ra + (Z = 88) ion provides a very promising route towards a most precise measureme...
A single trapped Ra + (Z = 88) ion provides a very promising route towards a most precise measureme...
Atomic parity violation (APV) experiments are sensitive probes of the electroweak interaction at low...
Atomic parity violation (APV) experiments are sensitive probes of the electroweak interaction at low...
Atomic parity violation (APV) experiments are sensitive probes of the electroweak interaction at low...
Atomic parity violation (APV) experiments are sensitive probes of the electroweak interaction at low...
Atomic parity violation (APV) experiments are sensitive probes of the electroweak interaction at low...
Atomic parity violation (APV) experiments are sensitive probes of the electroweak interaction at low...
Atomic parity violation (APV) experiments are sensitive probes of the electroweak interaction at low...
Atomic parity violation (APV) experiments are sensitive probes of the electroweak interaction at low...
Atomic parity violation (APV) experiments are sensitive probes of the electroweak interaction at low...
Atomic parity violation (APV) experiments are sensitive probes of the electroweak interaction at low...
Atomic parity violation (APV) experiments are sensitive probes of the electroweak interaction at low...
Atomic parity violation (APV) experiments are sensitive probes of the electroweak interaction at low...
Atomic parity violation (APV) experiments are sensitive probes of the electroweak interaction at low...
A single trapped Ra + (Z = 88) ion provides a very promising route towards a most precise measureme...
A single trapped Ra + (Z = 88) ion provides a very promising route towards a most precise measureme...
Atomic parity violation (APV) experiments are sensitive probes of the electroweak interaction at low...
Atomic parity violation (APV) experiments are sensitive probes of the electroweak interaction at low...
Atomic parity violation (APV) experiments are sensitive probes of the electroweak interaction at low...
Atomic parity violation (APV) experiments are sensitive probes of the electroweak interaction at low...
Atomic parity violation (APV) experiments are sensitive probes of the electroweak interaction at low...
Atomic parity violation (APV) experiments are sensitive probes of the electroweak interaction at low...
Atomic parity violation (APV) experiments are sensitive probes of the electroweak interaction at low...
Atomic parity violation (APV) experiments are sensitive probes of the electroweak interaction at low...
Atomic parity violation (APV) experiments are sensitive probes of the electroweak interaction at low...
Atomic parity violation (APV) experiments are sensitive probes of the electroweak interaction at low...
Atomic parity violation (APV) experiments are sensitive probes of the electroweak interaction at low...
Atomic parity violation (APV) experiments are sensitive probes of the electroweak interaction at low...
Atomic parity violation (APV) experiments are sensitive probes of the electroweak interaction at low...
A single trapped Ra + (Z = 88) ion provides a very promising route towards a most precise measureme...
A single trapped Ra + (Z = 88) ion provides a very promising route towards a most precise measureme...