During 1996, the SLD collaboration completed construction and began operation of a new charge-coupled device (CCD) vertex detector (VXD3). Since then, its performance has been studied in detail and a new topological vertexing technique has been developed. In this paper, we discuss the design of VXD3, procedures for aligning it, and the tracking and vertexing improvements that have led to its world-record performance.
In the past year, the Linear Collider Flavour Identification (LCFI) Collaboration has taken signific...
The future e e+- Linear Collider will offer unique opportunities for new physics, both within the St...
The LCFI collaboration started work in October 1998 after PPESP approval for an exploratory R&D ...
The SLD collaboration completed construction of a new CCD vertex detector (VXD3) in January 1996 and...
The SLD Collaboration is building a new CCD vertex detector (VXD3) comprising 96 3.2 Mpixel CCDs of ...
The SLD upgrade CCD vertex detector (VXD3) is described. Its 307 million pixels are assembled from 9...
This paper describes the design, construction, and initial operation of SLD's upgraded vertex d...
The physics motivation for the vertex detector (VTX) has been discussed in the Detector Concept sect...
The tracking resolution and vertex finding capabilities of the SLD experiment depended upon a precis...
I present a summary of the experience with CCD-based vertex detectors at the SLD experiment at SLAC,...
I present a summary of the experience with CCD-based vertex detectors at the SLD experiment at SLAG....
This thesis was submitted for the degree of Doctor of Philosophy and awarded by Brunel University.Th...
TESLA will provide a major challenge and opportunity for flavour identification. The small-radius be...
In the past year, the Linear Collider Flavour Identification (LCFI) Collaboration has taken signific...
International audienceThe Silicon Vertex Detector of Belle II is a state-of-the-art tracking an vert...
In the past year, the Linear Collider Flavour Identification (LCFI) Collaboration has taken signific...
The future e e+- Linear Collider will offer unique opportunities for new physics, both within the St...
The LCFI collaboration started work in October 1998 after PPESP approval for an exploratory R&D ...
The SLD collaboration completed construction of a new CCD vertex detector (VXD3) in January 1996 and...
The SLD Collaboration is building a new CCD vertex detector (VXD3) comprising 96 3.2 Mpixel CCDs of ...
The SLD upgrade CCD vertex detector (VXD3) is described. Its 307 million pixels are assembled from 9...
This paper describes the design, construction, and initial operation of SLD's upgraded vertex d...
The physics motivation for the vertex detector (VTX) has been discussed in the Detector Concept sect...
The tracking resolution and vertex finding capabilities of the SLD experiment depended upon a precis...
I present a summary of the experience with CCD-based vertex detectors at the SLD experiment at SLAC,...
I present a summary of the experience with CCD-based vertex detectors at the SLD experiment at SLAG....
This thesis was submitted for the degree of Doctor of Philosophy and awarded by Brunel University.Th...
TESLA will provide a major challenge and opportunity for flavour identification. The small-radius be...
In the past year, the Linear Collider Flavour Identification (LCFI) Collaboration has taken signific...
International audienceThe Silicon Vertex Detector of Belle II is a state-of-the-art tracking an vert...
In the past year, the Linear Collider Flavour Identification (LCFI) Collaboration has taken signific...
The future e e+- Linear Collider will offer unique opportunities for new physics, both within the St...
The LCFI collaboration started work in October 1998 after PPESP approval for an exploratory R&D ...