Literature DB >> 16038591

A complete dielectric response model for liquid water: a solution of the Bethe ridge problem.

Dimitris Emfietzoglou1, Francis A Cucinotta, Hooshang Nikjoo.   

Abstract

We present a complete yet computationally simple model for the dielectric response function of liquid water over the energy-momentum plane, which, in contrast to earlier models, is consistent with the recent inelastic X-ray scattering spectroscopy data at both zero and finite momentum transfer values. The model follows Ritchie's extended-Drude algorithm and is particularly effective at the region of the Bethe ridge, substantially improving previous models. The present development allows for a more accurate simulation of the inelastic scattering and energy deposition process of low-energy electrons in liquid water and other biomaterials. As an example, we calculate the stopping power of liquid water for electrons over the 0.1-10 keV range where direct experimental measurements are still impractical and the Bethe stopping formula is inaccurate. The new stopping power values are up to 30-40% lower than previous calculations. Within the range of validity of the first Born approximation, the new values are accurate to within the experimental uncertainties (a few percent). At the low end, the introduction of Born corrections raises the uncertainty to perhaps approximately 10%. Thus the present model helps extend the ICRU electron stopping power database for liquid water down to about two orders of magnitude with a comparable level of uncertainty.

Entities:  

Keywords:  NASA Center JSC; NASA Discipline Radiation Health

Mesh:

Substances:

Year:  2005        PMID: 16038591     DOI: 10.1667/rr3399

Source DB:  PubMed          Journal:  Radiat Res        ISSN: 0033-7587            Impact factor:   2.841


  15 in total

1.  Electron Emission from Foils and Biological Materials after Proton Impact.

Authors:  Michael Dingfelder; Anderson Travia; Robert A McLawhorn; Jefferson L Shinpaugh; Larry H Toburen
Journal:  Radiat Phys Chem Oxf Engl 1993       Date:  2008       Impact factor: 2.858

2.  A new calculation on spectrum of direct DNA damage induced by low-energy electrons.

Authors:  Liming Zhang; Zhenyu Tan
Journal:  Radiat Environ Biophys       Date:  2009-12-29       Impact factor: 1.925

3.  Comparisons of calculations with PARTRAC and NOREC: transport of electrons in liquid water.

Authors:  M Dingfelder; R H Ritchie; J E Turner; W Friedland; H G Paretzke; R N Hamm
Journal:  Radiat Res       Date:  2008-05       Impact factor: 2.841

4.  Calculation on spectrum of direct DNA damage induced by low-energy electrons including dissociative electron attachment.

Authors:  Wei Liu; Zhenyu Tan; Liming Zhang; Christophe Champion
Journal:  Radiat Environ Biophys       Date:  2017-02-09       Impact factor: 1.925

5.  Stopping power and CSDA range calculations for incident electrons and positrons in breast and brain tissues.

Authors:  Mustafa Çağatay Tufan; Tuba Namdar; Hasan Gümüş
Journal:  Radiat Environ Biophys       Date:  2013-01-19       Impact factor: 1.925

6.  Monte Carlo calculations of energy deposition distributions of electrons below 20 keV in protein.

Authors:  Zhenyu Tan; Wei Liu
Journal:  Radiat Environ Biophys       Date:  2014-02-12       Impact factor: 1.925

7.  Microdosimetry of DNA conformations: relation between direct effect of (60)Co gamma rays and topology of DNA geometrical models in the calculation of A-, B- and Z-DNA radiation-induced damage yields.

Authors:  Farid Semsarha; Gholamreza Raisali; Bahram Goliaei; Hossein Khalafi
Journal:  Radiat Environ Biophys       Date:  2016-03-16       Impact factor: 1.925

8.  Investigation on the correlation between energy deposition and clustered DNA damage induced by low-energy electrons.

Authors:  Wei Liu; Zhenyu Tan; Liming Zhang; Christophe Champion
Journal:  Radiat Environ Biophys       Date:  2018-01-15       Impact factor: 1.925

9.  Updated model for dielectric response function of liquid water.

Authors:  Michael Dingfelder
Journal:  Appl Radiat Isot       Date:  2013-01-18       Impact factor: 1.513

Review 10.  Track-structure simulations for charged particles.

Authors:  Michael Dingfelder
Journal:  Health Phys       Date:  2012-11       Impact factor: 1.316

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