The WWR-M reactor at PNPI is planned to be equipped with a high-flux source for ultracold neutrons (UCNs). The method of UCN production is based on neutron conversion in superfluid helium, exploiting the particular qualities of that quantum liquid. As a result of optimizing the source parameters, we expect a temperature of superfluid helium of 1.2 K and a UCN density of 1.3 × 104 cm−3 in a neutron electric dipole moment (EDM) spectrometer. The expected flux densities of cold neutrons (with wavelengths in the range 2–20 Å) and very cold neutrons (50–100 Å) at the output of a neutron guide with a cross section of 30 × 200 mm2 are 9.7 × 107 cm−2s−1 and 8.3 × 105 cm−2s−1, respectively. The capability of maintaining a temperature of 1.37 K at a ...
We propose a new method for production of ultracold neutrons (UCNs) in superfluid helium. The princi...
Ultracold neutrons (UCN) can be stored in suitable bottles and ob-served for several hundreds of sec...
Elsevier use only: Received date here; revised date here; accepted date here Research and developmen...
The WWR-M reactor at PNPI is planned to be equipped with a high-flux source for ultracold neutrons (...
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 most intense sources of ultra cold neutrons (UCN) have bee built at reactors where the high aver...
AbstractOn the basis of the working research WWR-M reactor at PNPI there is being built a highly int...
Ultracold neutrons (UCN) can be stored in suitable bottles and observed for several hundreds of seco...
Research in fundamental physics with the free neutron is one of the key tools for testing the Standa...
Ultra-Cold Neutrons (UCN) have energies ~ 10^-7 eV. Their characteristics are described in another p...
Research in fundamental physics with the free neutron is one of the key tools for testing the Standa...
At PSI currently a source of ultra cold neutrons (UCN) is being built. This source is based on the s...
We propose a new method for production of ultracold neutrons (UCNs) in superfluid helium. The princi...
We propose a new method for production of ultracold neutrons (UCNs) in superfluid helium. The princi...
Ultracold neutrons (UCN) can be stored in suitable bottles and ob-served for several hundreds of sec...
Elsevier use only: Received date here; revised date here; accepted date here Research and developmen...
The WWR-M reactor at PNPI is planned to be equipped with a high-flux source for ultracold neutrons (...
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 most intense sources of ultra cold neutrons (UCN) have bee built at reactors where the high aver...
AbstractOn the basis of the working research WWR-M reactor at PNPI there is being built a highly int...
Ultracold neutrons (UCN) can be stored in suitable bottles and observed for several hundreds of seco...
Research in fundamental physics with the free neutron is one of the key tools for testing the Standa...
Ultra-Cold Neutrons (UCN) have energies ~ 10^-7 eV. Their characteristics are described in another p...
Research in fundamental physics with the free neutron is one of the key tools for testing the Standa...
At PSI currently a source of ultra cold neutrons (UCN) is being built. This source is based on the s...
We propose a new method for production of ultracold neutrons (UCNs) in superfluid helium. The princi...
We propose a new method for production of ultracold neutrons (UCNs) in superfluid helium. The princi...
Ultracold neutrons (UCN) can be stored in suitable bottles and ob-served for several hundreds of sec...
Elsevier use only: Received date here; revised date here; accepted date here Research and developmen...