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1.
Life Sci Space Res (Amst) ; 39: 26-42, 2023 Nov.
Article in English | MEDLINE | ID: mdl-37945086

ABSTRACT

The Light Ion Detector for ALTEA (LIDAL) is a new instrument designed to measure flux, energy spectra and Time of Flight of ions in a space habitat. It was installed in the International Space Station (Columbus) on January 19, 2020 and it is still operating. This paper presents the results of LIDAL measurements in the first 17 months of operation (01/2020-05/2022). Particle flux, dose rate, Time of Flight and spectra are presented and studied in the three ISS orthogonal directions and in the different geomagnetic regions (high latitude, low latitude, and South Atlantic Anomaly, SAA). The results are consistent with previous measurements. Dose rates range between 1.8 nGy/s and 2.4 nGy/s, flux between 0.21 particles/(sr cm2 s) and 0.32 particles/(sr cm2 s) as measured across time and directions during the full orbit. These data offer insights concerning the radiation measurements in the ISS and demonstrate the capabilities of LIDAL as a unique tool for the measurement of space radiation in space habitats, also providing novel information relevant to assess radiation risks for astronauts.


Subject(s)
Cosmic Radiation , Radiation Monitoring , Space Flight , Spacecraft , Solar Activity , Radiation Monitoring/methods , Radiation Dosage , Ions
2.
Phys Rev Lett ; 115(11): 111101, 2015 Sep 11.
Article in English | MEDLINE | ID: mdl-26406816

ABSTRACT

In this work we present results of a direct search for strange quark matter (SQM) in cosmic rays with the PAMELA space spectrometer. If this state of matter exists it may be present in cosmic rays as particles, called strangelets, having a high density and an anomalously high mass-to-charge (A/Z) ratio. A direct search in space is complementary to those from ground-based spectrometers. Furthermore, it has the advantage of being potentially capable of directly identifying these particles, without any assumption on their interaction model with Earth's atmosphere and the long-term stability in terrestrial and lunar rocks. In the rigidity range from 1.0 to ∼1.0×10^{3} GV, no such particles were found in the data collected by PAMELA between 2006 and 2009. An upper limit on the strangelet flux in cosmic rays was therefore set for particles with charge 1≤Z≤8 and mass 4≤A≤1.2×10^{5}. This limit as a function of mass and as a function of magnetic rigidity allows us to constrain models of SQM production and propagation in the Galaxy.

3.
Phys Rev Lett ; 111(8): 081102, 2013 Aug 23.
Article in English | MEDLINE | ID: mdl-24010424

ABSTRACT

Precision measurements of the positron component in the cosmic radiation provide important information about the propagation of cosmic rays and the nature of particle sources in our Galaxy. The satellite-borne experiment PAMELA has been used to make a new measurement of the cosmic-ray positron flux and fraction that extends previously published measurements up to 300 GeV in kinetic energy. The combined measurements of the cosmic-ray positron energy spectrum and fraction provide a unique tool to constrain interpretation models. During the recent solar minimum activity period from July 2006 to December 2009, approximately 24,500 positrons were observed. The results cannot be easily reconciled with purely secondary production, and additional sources of either astrophysical or exotic origin may be required.

5.
Stomatol Mediterr ; 8(3): 229-32, 1988.
Article in Italian | MEDLINE | ID: mdl-3078982

ABSTRACT

The authors explained, after an attentive review of literature, the clinic and therapeutic procedures about dental germs' transplant. They show the indications for this surgical operation, the procedure for selection of grafting germs and the current surgical technique to do it.


Subject(s)
Tooth Germ/transplantation , Humans
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