A polarized deuterium target internal to a medium-energy electron storage ring is described in the context of spindependent (e, e′d) and (e ,e′p) experiments. Tensor polarized deuterium was produced in an atomic beam source and injected into a storage cell target. A Breit-Rabi polarimeter was used to monitor the injected atomic beam polarization. An electrostatic ion-extraction system and a Wien filter were utilized to measure on-line the atomic fraction of the target gas (71 ± 2%) in the storage cell. A target thickness t ≃ 2 × 1
We discuss ion extraction from an internal target in a storage ring, separation of atomic and molecu...
We discuss ion extraction from an internal target in a storage ring, separation of atomic and molecu...
We discuss ion extraction from an internal target in a storage ring, separation of atomic and molecu...
A polarized deuterium target internal to a medium-energy electron storage ring is described in the c...
A polarized deuterium target internal to a medium-energy electron storage ring is described in the c...
A polarized deuterium target internal to a medium-energy electron storage ring is described in the c...
The performance of a high-density polarized hydrogen/deuterium gas target internal to a medium-energ...
The performance of a high-density polarized hydrogen/deuterium gas target internal to a medium-energ...
The performance of a high-density polarized hydrogen/deuterium gas target internal to a medium-energ...
The performance of a high-density polarized hydrogen/deuterium gas target internal to a medium-energ...
The performance of a high-density polarized hydrogen/deuterium gas target internal to a medium-energ...
An ion-extraction polarimeter has been developed for internal target experiments in storage rings. H...
An ion-extraction polarimeter has been developed for internal target experiments in storage rings. H...
An ion-extraction polarimeter has been developed for internal target experiments in storage rings. H...
The performance of a hydrogen/deuterium polarized gas target in a storage ring is presented. The tar...
We discuss ion extraction from an internal target in a storage ring, separation of atomic and molecu...
We discuss ion extraction from an internal target in a storage ring, separation of atomic and molecu...
We discuss ion extraction from an internal target in a storage ring, separation of atomic and molecu...
A polarized deuterium target internal to a medium-energy electron storage ring is described in the c...
A polarized deuterium target internal to a medium-energy electron storage ring is described in the c...
A polarized deuterium target internal to a medium-energy electron storage ring is described in the c...
The performance of a high-density polarized hydrogen/deuterium gas target internal to a medium-energ...
The performance of a high-density polarized hydrogen/deuterium gas target internal to a medium-energ...
The performance of a high-density polarized hydrogen/deuterium gas target internal to a medium-energ...
The performance of a high-density polarized hydrogen/deuterium gas target internal to a medium-energ...
The performance of a high-density polarized hydrogen/deuterium gas target internal to a medium-energ...
An ion-extraction polarimeter has been developed for internal target experiments in storage rings. H...
An ion-extraction polarimeter has been developed for internal target experiments in storage rings. H...
An ion-extraction polarimeter has been developed for internal target experiments in storage rings. H...
The performance of a hydrogen/deuterium polarized gas target in a storage ring is presented. The tar...
We discuss ion extraction from an internal target in a storage ring, separation of atomic and molecu...
We discuss ion extraction from an internal target in a storage ring, separation of atomic and molecu...
We discuss ion extraction from an internal target in a storage ring, separation of atomic and molecu...