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A. Anghel

Publications and source records attributed to A. Anghel.

7 recordsLinked to original sources

Solid deuterium surface degradation at ultracold neutron sources

Solid deuterium (sD_2) is used as an efficient converter to produce ultracold neutrons (UCN). It is known that the sD_2 must be sufficiently cold, of high purity and mostly in its ortho-state in order to guarantee long lifetimes of UCN in the solid from which they are extracted into vacuum. Also the UCN transparency of the bulk sD_2 material must be high because crystal inhomogeneities limit the mean free path for elastic scattering and reduce the extraction efficiency. Observations at the UCN sources at Paul Scherrer Institute and at Los Alamos National Laboratory consistently show a decrease of the UCN yield with time of operation after initial preparation or later treatment (`conditioning') of the sD_2. We show that, in addition to the quality of the bulk sD_2, the quality of its surface is essential. Our observations and simulations support the view that the surface is deteriorating due to a build-up of D_2 frost-layers under pulsed operation which leads to strong albedo reflections of UCN and subsequent loss. We report results of UCN yield measurements, temperature and pressure behavior of deuterium during source operation and conditioning, and UCN transport simulations. This, together with optical observations of sD_2 frost formation on initially transparent sD_2 in offline studies with pulsed heat input at the North Carolina State University UCN source results in a consistent description of the UCN yield decrease.

physics.ins-det

The self fied effect on the power-law index of superconducting cables

It is shown that in the absence of inter-strand current redistribution the self-field effect is to always increase the power-law index of the volt-ampere characteristic and to decrease the temperature and magnetic field derivatives of the critical current line. We show that the take-off limit of a strand in a cable made of insulated strands is equal to that of a free strand due to a compensation effect between the increase of the power-law index and the decrease of the magnetic field derivative of the critical current.

cond-mat.supr-con

A Note on the Stability of Cable-in-Conduit Conductors with Current Dependent Power-Law Index

A new stability criterion for cable-in-conduit superconductors with power-law current-voltage characteristic and current dependent power-law index, $n=n(I_c)$ is given. After a short discussion of the power-law volt-ampere characteristic, different models of stability are discussed with special stress on the differences to the older stability models. A typical stability case, the extended cryostability is analyzed in detail. This model is characterized by a smooth superconducting to normal transition and a power-law type heat generation. The change in the helium temperature, typical for a cable-in-conduit conductor, is included in the calculation. Finally, the connection and interrelation aspects between the two common approximations of the voltage-current characteristic of the technical superconductors, the power-law and the exponential function are investigated. It is shown that the exponential form is incompatible with the power-law form if the power-law index is a function of temperature and magnetic field. An alternative exponential form is proposed.

cond-mat.supr-con

Stability of power-law cable-in-conduit superconductors

The stability properties of cable-in-conduit superconductors with a power-law voltage-current characteristic are investigated using a previously developed model description for the take-off properties of these conductors.

cond-mat.supr-con

Effect of Strand Longitudinal Thermal Conduction on Take-Off Properties of Cable-in-Conduit Superconductors

The effect of the strand longitudinal thermal conduction carried mainly by the stabilizing copper on the take-off (quench) behaviour of cable-in-conduit supercondutors is investigated theoretically and numerically. An equal area criterion type of condition is found for the thermal equilibrium of the conductor. It is shown that the thermal conduction effect can be quantified in terms of an effective, enhanced heat-exchange coefficient.

cond-mat.supr-con