Depth dependency of neutrons produced by cosmic rays (CRs) in the lunar subsurface was estimated using the three-dimensional Monte Carlo particle and heavy ion transport simulation code, PHITS, incorporating the latest high energy nuclear data, JENDL/HE-2007. The PHITS simulations of equilibrium neutron density profiles in the lunar subsurface were compared with the measurement by Apollo 17 Lunar Neutron Probe Experiment (LNPE). Our calculations reproduced the LNPE data except for the 350-400 mg/cm(2) region under the improved condition using the CR spectra model based on the latest observations, well-tested nuclear interaction models with systematic cross section data, and JENDL/HE-2007
This file tabulates neutron leakage flux measurements for data collected by the Lunar Reconnaissance...
Planetary thermal neutron fluxes provide a sensitive proxy for mafic and feldspathic terranes, and a...
The Lunar Lander Neutron and Dosimetry (LND) Experiment aboard the Chang’E-4 Lander on the lunar far...
Depth dependency of neutrons produced by cosmic rays (CRs) in the lunar subsurface was estimated usi...
The neutron production from galactic cosmic ray (GCR) protons and alpha particles in the lunar subsu...
The neutron production from galactic cosmic ray (GCR) protons and alpha particles in the lunar subsu...
The neutron production from alpha particles in galactic cosmic rays (GCR) in the lunar subsurface ha...
An in situ measurement of the lunar neutron density from 20 to 400 g/sq cm depth between the lunar s...
As humanity prepares for extended lunar exploration, understanding the radiation environment on the ...
Assuming different abundances of the Apollo lunar soil samples and the average spectrum of galactic ...
Abstract Dose assessment on the lunar surface is important for future long-term crewed activity. In ...
Cosmic rays interacting with the surface nuclei of the moon produce neutrons, some of which emerge f...
Lunar neutron flux data measured by the Lunar Exploration Neutron Detector (LEND) on board NASA's Lu...
abstract: The lunar poles have hydrated materials in their permanently shadowed regions (PSRs), also...
The lunar surface is directly and continuously exposed to Galactic Cosmic ray (GCR) particles and So...
This file tabulates neutron leakage flux measurements for data collected by the Lunar Reconnaissance...
Planetary thermal neutron fluxes provide a sensitive proxy for mafic and feldspathic terranes, and a...
The Lunar Lander Neutron and Dosimetry (LND) Experiment aboard the Chang’E-4 Lander on the lunar far...
Depth dependency of neutrons produced by cosmic rays (CRs) in the lunar subsurface was estimated usi...
The neutron production from galactic cosmic ray (GCR) protons and alpha particles in the lunar subsu...
The neutron production from galactic cosmic ray (GCR) protons and alpha particles in the lunar subsu...
The neutron production from alpha particles in galactic cosmic rays (GCR) in the lunar subsurface ha...
An in situ measurement of the lunar neutron density from 20 to 400 g/sq cm depth between the lunar s...
As humanity prepares for extended lunar exploration, understanding the radiation environment on the ...
Assuming different abundances of the Apollo lunar soil samples and the average spectrum of galactic ...
Abstract Dose assessment on the lunar surface is important for future long-term crewed activity. In ...
Cosmic rays interacting with the surface nuclei of the moon produce neutrons, some of which emerge f...
Lunar neutron flux data measured by the Lunar Exploration Neutron Detector (LEND) on board NASA's Lu...
abstract: The lunar poles have hydrated materials in their permanently shadowed regions (PSRs), also...
The lunar surface is directly and continuously exposed to Galactic Cosmic ray (GCR) particles and So...
This file tabulates neutron leakage flux measurements for data collected by the Lunar Reconnaissance...
Planetary thermal neutron fluxes provide a sensitive proxy for mafic and feldspathic terranes, and a...
The Lunar Lander Neutron and Dosimetry (LND) Experiment aboard the Chang’E-4 Lander on the lunar far...