International audienceWe have investigated experimentally the pressure dependence of the production of ultracold neutrons (UCN) in superfluid helium in the range from saturated vapor pressure to 20 bar. A neutron velocity selector allowed the separation of underlying single-phonon and multiphonon processes by varying the incident cold neutron (CN) wavelength in the range from 3.5 to 10 Å. The predicted pressure dependence of UCN production derived from inelastic neutron scattering data was confirmed for the single-phonon excitation. For multiphonon based UCN production we found no significant dependence on pressure whereas calculations from inelastic neutron scattering data predict an increase of 43(6) % at 20 bar relative to saturated vapo...
The experimental preparation for a new series of measurements on the neutron electric dipole moment ...
The recently proposed CSUN source at TRIUMF aims to have the highest UCN density, and will be used t...
The most intense sources of ultra cold neutrons (UCN) have bee built at reactors where the high aver...
International audienceWe have investigated experimentally the pressure dependence of the production ...
Ultra-cold neutrons (UCN) are produced in superfluid helium by single- and multi-phonon excitation. ...
We report experiments on the production of ultracold neutrons (UCN) in a converter of superfluid hel...
We report experiments on the production of ultracold neutrons (UCN) in a converter of superfluid hel...
Production of ultra-cold neutrons in pressurized superfluid helium and a new superfluid heliu
The first measurements of the rate at which ultra-cold neutrons are produced within a vessel of liqu...
The WWR-M reactor at PNPI is planned to be equipped with a high-flux source for ultracold neutrons (...
AbstractOn the basis of the working research WWR-M reactor at PNPI there is being built a highly int...
We propose a new method for production of ultracold neutrons (UCNs) in superfluid helium. The princi...
The superconducting magnets of the future Large Hadron Collider (LHC) at CERN will operate in pressu...
Ultracold neutrons (UCN) have been produced using the cold neutron (CN) beam FUNSPIN at SINQ on cryo...
The techniques to do elastic and inelastic neutron scattering at steady-state and pulsed sources are...
The experimental preparation for a new series of measurements on the neutron electric dipole moment ...
The recently proposed CSUN source at TRIUMF aims to have the highest UCN density, and will be used t...
The most intense sources of ultra cold neutrons (UCN) have bee built at reactors where the high aver...
International audienceWe have investigated experimentally the pressure dependence of the production ...
Ultra-cold neutrons (UCN) are produced in superfluid helium by single- and multi-phonon excitation. ...
We report experiments on the production of ultracold neutrons (UCN) in a converter of superfluid hel...
We report experiments on the production of ultracold neutrons (UCN) in a converter of superfluid hel...
Production of ultra-cold neutrons in pressurized superfluid helium and a new superfluid heliu
The first measurements of the rate at which ultra-cold neutrons are produced within a vessel of liqu...
The WWR-M reactor at PNPI is planned to be equipped with a high-flux source for ultracold neutrons (...
AbstractOn the basis of the working research WWR-M reactor at PNPI there is being built a highly int...
We propose a new method for production of ultracold neutrons (UCNs) in superfluid helium. The princi...
The superconducting magnets of the future Large Hadron Collider (LHC) at CERN will operate in pressu...
Ultracold neutrons (UCN) have been produced using the cold neutron (CN) beam FUNSPIN at SINQ on cryo...
The techniques to do elastic and inelastic neutron scattering at steady-state and pulsed sources are...
The experimental preparation for a new series of measurements on the neutron electric dipole moment ...
The recently proposed CSUN source at TRIUMF aims to have the highest UCN density, and will be used t...
The most intense sources of ultra cold neutrons (UCN) have bee built at reactors where the high aver...