Accelerator mass spectrometry (AMS) is an ultrasensitive technique for measuring long-lived actinides, e.g., 236U, 237Np and Pu isotopes. In order to improve the detection limit for actinides abundance, and to increase the detection efficiency in actinides AMS measurement, a 16-strip silicon detector was used to identify actinides at the Center for Isotopic Research on Cultural and Environmental heritage in Caserta, Italy. The sensitivity of 236U/238U was 1 Ã 10-11 by special resolution and 5.0 Ã 10-12 by time resolution. The pulse height defect of 236U in an ion-implanted silicon detector in the low-energy range with 17.26 MeV is presented
ABSTRACT. 237Np (~2.14 × 106 yr half-life) is potentially applicable in studies on nuclear safeguard...
In the last decade, compact AMS systems have demonstrated their potential to measure actinides (236U...
Generally low levels of plutonium in environmental samples, often combined with limited sample sizes...
Accelerator mass spectrometry (AMS) is an ultrasensitive technique for measuring long-lived actinide...
Actinide isotopes are present in environmental samples at ultra-trace levels (236U concentration is ...
Accelerator Mass Spectrometry (AMS) is presently the most sensitive technique for the measurement of...
In order to measure the isotopic ratio of actinides, the upgrade of the accelerator mass spectrometr...
Accelerator mass spectrometry (AMS) is presently the most sensitive technique for the measurement of...
The nuclear safeguards system which is used to monitor compliance with the Nuclear Non-proliferation...
Accelerator mass spectrometry (AMS) is an efficient method to measure long-lived radioisotopes, foun...
In the last decade, compact AMS systems have demonstrated their potential to measure actinides (236U...
Accelerator mass spectrometry (AMS) is presently the most sensitive technique for the measurement of...
Accelerator mass spectrometry (AMS) is presently the most sensitive technique for the environmental ...
The measurements of actinide isotopic ratios, in particular 236U/238U, in environmental samples requ...
The rare isotopes 236U and 239Pu are produced naturally by neutron capture in uranium ores. Here we ...
ABSTRACT. 237Np (~2.14 × 106 yr half-life) is potentially applicable in studies on nuclear safeguard...
In the last decade, compact AMS systems have demonstrated their potential to measure actinides (236U...
Generally low levels of plutonium in environmental samples, often combined with limited sample sizes...
Accelerator mass spectrometry (AMS) is an ultrasensitive technique for measuring long-lived actinide...
Actinide isotopes are present in environmental samples at ultra-trace levels (236U concentration is ...
Accelerator Mass Spectrometry (AMS) is presently the most sensitive technique for the measurement of...
In order to measure the isotopic ratio of actinides, the upgrade of the accelerator mass spectrometr...
Accelerator mass spectrometry (AMS) is presently the most sensitive technique for the measurement of...
The nuclear safeguards system which is used to monitor compliance with the Nuclear Non-proliferation...
Accelerator mass spectrometry (AMS) is an efficient method to measure long-lived radioisotopes, foun...
In the last decade, compact AMS systems have demonstrated their potential to measure actinides (236U...
Accelerator mass spectrometry (AMS) is presently the most sensitive technique for the measurement of...
Accelerator mass spectrometry (AMS) is presently the most sensitive technique for the environmental ...
The measurements of actinide isotopic ratios, in particular 236U/238U, in environmental samples requ...
The rare isotopes 236U and 239Pu are produced naturally by neutron capture in uranium ores. Here we ...
ABSTRACT. 237Np (~2.14 × 106 yr half-life) is potentially applicable in studies on nuclear safeguard...
In the last decade, compact AMS systems have demonstrated their potential to measure actinides (236U...
Generally low levels of plutonium in environmental samples, often combined with limited sample sizes...