D J W Mous
Biographic Data
| ID | 5599044 |
|---|---|
| NAME | D J W Mous |
| GIVEN NAMES | D J W |
| FAMILY NAME | Mous |
| SIGNATURE | MOUS D J W |
| VERIFIED | No |
| TOTAL WORKS | 4 |
| TOTAL CITATIONS | 8 |
| AUTHOR COUNT | 4 |
| EDITOR COUNT | 0 |
| FIRST PUBLICATION YEAR | 2001 |
| LATEST PUBLICATION YEAR | 2019 |
| H-INDEX | 2 |
A Novel Dedicated HVE 14 C AMS System
High Voltage Engineering Europa (HVE) has designed a vacuum-insulated tandem accelerator dedicated to radiocarbon ( 14 C) analysis. A unique feature of the design is a magnetic charge state selector that is incorporated in the high voltage terminal, which reduces the primary source of background that originates from the injection of 13 CH − to negligible levels. As a result, background levels in the low 10 −16 regimes are anticipated, thus suppor…
High-Current 14 C Measurements on an HVE 1MV AMS System
High radiocarbon sample throughput is an increasingly important requirement of accelerator mass spectrometry (AMS) systems, which in turn requires high source output. To accomplish this, HVE AMS systems use a model SO-110B ion source, which can run at outputs of more than 200 μA 12 C. It is known that high source output may compromise precision. To quantify this effect, we have tested an HVE 1MV AMS system for the influence of medium (100 μA) and…
Fast and Accurate Sequential Injection AMS with Gated Faraday Cup Current Measurement
Sequential injection or bouncing has a number of properties which can lead to a reduction of the analysis accuracy if no appropriate measures are taken. A special injection system has been developed in order to eliminate these shortcomings. The influence of source glitches or instabilities on the measured isotopic ratio is substantially reduced by a high cycling frequency. A fast beam-blanking unit guarantees the needed accuracy of the injection …
Accelerator Mass Spectrometry at High Voltage Engineering Europa (HVEE)
In recent years, High Voltage Engineering Europa (HVEE) has demonstrated its capability of developing and installing turnkey accelerator mass spectrometry (AMS) equipment for the analysis of, among others, 14 C and 129 I. Five 3MV systems using sequential and/or simultaneous injection are operational in the field today, and they have shown excellent long-term stability providing high-precision analyses on a routine basis. Another three AMS system…
Fast and Accurate Sequential Injection AMS with Gated Faraday Cup Current Measurement
Sequential injection or bouncing has a number of properties which can lead to a reduction of the analysis accuracy if no appropriate measures are taken. A special injection system has been developed in order to eliminate these shortcomings. The influence of source glitches or instabilities on the measured isotopic ratio is substantially reduced by a high cycling frequency. A fast beam-blanking unit guarantees the needed accuracy of the injection …
Accelerator Mass Spectrometry at High Voltage Engineering Europa (HVEE)
In recent years, High Voltage Engineering Europa (HVEE) has demonstrated its capability of developing and installing turnkey accelerator mass spectrometry (AMS) equipment for the analysis of, among others, 14 C and 129 I. Five 3MV systems using sequential and/or simultaneous injection are operational in the field today, and they have shown excellent long-term stability providing high-precision analyses on a routine basis. Another three AMS system…
A Novel Dedicated HVE 14 C AMS System
High Voltage Engineering Europa (HVE) has designed a vacuum-insulated tandem accelerator dedicated to radiocarbon ( 14 C) analysis. A unique feature of the design is a magnetic charge state selector that is incorporated in the high voltage terminal, which reduces the primary source of background that originates from the injection of 13 CH − to negligible levels. As a result, background levels in the low 10 −16 regimes are anticipated, thus suppor…
High-Current 14 C Measurements on an HVE 1MV AMS System
High radiocarbon sample throughput is an increasingly important requirement of accelerator mass spectrometry (AMS) systems, which in turn requires high source output. To accomplish this, HVE AMS systems use a model SO-110B ion source, which can run at outputs of more than 200 μA 12 C. It is known that high source output may compromise precision. To quantify this effect, we have tested an HVE 1MV AMS system for the influence of medium (100 μA) and…
Accelerator Mass Spectrometry at High Voltage Engineering Europa (HVEE)
In recent years, High Voltage Engineering Europa (HVEE) has demonstrated its capability of developing and installing turnkey accelerator mass spectrometry (AMS) equipment for the analysis of, among others, 14 C and 129 I. Five 3MV systems using sequential and/or simultaneous injection are operational in the field today, and they have shown excellent long-term stability providing high-precision analyses on a routine basis. Another three AMS system…
Fast and Accurate Sequential Injection AMS with Gated Faraday Cup Current Measurement
Sequential injection or bouncing has a number of properties which can lead to a reduction of the analysis accuracy if no appropriate measures are taken. A special injection system has been developed in order to eliminate these shortcomings. The influence of source glitches or instabilities on the measured isotopic ratio is substantially reduced by a high cycling frequency. A fast beam-blanking unit guarantees the needed accuracy of the injection …
High-Current 14 C Measurements on an HVE 1MV AMS System
High radiocarbon sample throughput is an increasingly important requirement of accelerator mass spectrometry (AMS) systems, which in turn requires high source output. To accomplish this, HVE AMS systems use a model SO-110B ion source, which can run at outputs of more than 200 μA 12 C. It is known that high source output may compromise precision. To quantify this effect, we have tested an HVE 1MV AMS system for the influence of medium (100 μA) and…
A Novel Dedicated HVE 14 C AMS System
High Voltage Engineering Europa (HVE) has designed a vacuum-insulated tandem accelerator dedicated to radiocarbon ( 14 C) analysis. A unique feature of the design is a magnetic charge state selector that is incorporated in the high voltage terminal, which reduces the primary source of background that originates from the injection of 13 CH − to negligible levels. As a result, background levels in the low 10 −16 regimes are anticipated, thus suppor…
Engineering (4 works) · Nuclear Physics and Applications (4 works) · Physics (4 works) · Accelerator mass spectrometry (3 works) · Mass Spectrometry Techniques and Applications (3 works) · Nuclear engineering (3 works) · Nuclear physics (3 works) · Aerospace Engineering (2 works) · Chemistry (2 works) · Computer Science (2 works)