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Dense Matter Characterization by X-ray Thomson Scattering

Dense Matter Characterization by X-ray Thomson Scattering PDF Author:
Publisher:
ISBN:
Category :
Languages : en
Pages : 35

Book Description
We discuss the extension of the powerful technique of Thomson scattering to the x-ray regime for providing an independent measure of plasma parameters for dense plasmas. By spectrally-resolving the scattering, the coherent (Rayleigh) unshifted scattering component can be separated from the incoherent Thomson component, which is both Compton and Doppler shifted. The free electron density and temperature can then be inferred from the spectral shape of the high frequency Thomson scattering component. In addition, as the plasma temperature is decreased, the electron velocity distribution as measured by incoherent Thomson scattering will make a transition from the traditional Gaussian Boltzmann distribution to a density-dependent parabolic Fermi distribution to. We also present a discussion for a proof-of-principle experiment appropriate for a high energy laser facility.

Dense Matter Characterization by X-ray Thomson Scattering

Dense Matter Characterization by X-ray Thomson Scattering PDF Author:
Publisher:
ISBN:
Category :
Languages : en
Pages : 35

Book Description
We discuss the extension of the powerful technique of Thomson scattering to the x-ray regime for providing an independent measure of plasma parameters for dense plasmas. By spectrally-resolving the scattering, the coherent (Rayleigh) unshifted scattering component can be separated from the incoherent Thomson component, which is both Compton and Doppler shifted. The free electron density and temperature can then be inferred from the spectral shape of the high frequency Thomson scattering component. In addition, as the plasma temperature is decreased, the electron velocity distribution as measured by incoherent Thomson scattering will make a transition from the traditional Gaussian Boltzmann distribution to a density-dependent parabolic Fermi distribution to. We also present a discussion for a proof-of-principle experiment appropriate for a high energy laser facility.

Demonstration of Successful X-ray Thomson Scattering Using Picosecond K-[alpha] X-ray Sources for the Characterization of Dense Heated Matter

Demonstration of Successful X-ray Thomson Scattering Using Picosecond K-[alpha] X-ray Sources for the Characterization of Dense Heated Matter PDF Author:
Publisher:
ISBN:
Category :
Languages : en
Pages : 5

Book Description
We discuss the first successful K-[alpha] x-ray Thomson scattering experiment from solid density plasmas for use as a diagnostic in determining the temperature, density, and ionization state of warm dense matter with picosecond resolution. The development of this source as a diagnostic and stringent requirements for successful K-[alpha] x-ray Thomson scattering are addressed. Data for the experimental techniques described in this paper [1] suggest the capability of single shot characterization of warm dense matter and the ability to use this scattering source at future Free Electron Lasers (FEL) where comparable scattering signal levels are predicted.

Warm, Dense Plasma Characterization by X-ray Thomson Scattering

Warm, Dense Plasma Characterization by X-ray Thomson Scattering PDF Author:
Publisher:
ISBN:
Category :
Languages : en
Pages : 8

Book Description
We describe how the powerful technique of spectrally resolved Thomson scattering can be extended to the x-ray regime, for direct measurements of the ionization state, density, temperature, and the microscopic behavior of dense cool plasmas. Such a direct measurement of microscopic parameters of solid density plasmas could eventually be used to properly interpret laboratory measurements of material properties such as thermal and electrical conductivity, EUS and opacity. In addition, x-ray Thomson scattering will provide new information on the characteristics of rarely and hitherto difficult to diagnose Fermi degenerate and strongly coupled plasmas.

Simulations of X-ray Thomson Scattering from Warm Dense Matter

Simulations of X-ray Thomson Scattering from Warm Dense Matter PDF Author: Ghulam Shabbir Naz
Publisher:
ISBN:
Category :
Languages : en
Pages : 0

Book Description


Theory of X-ray Thomson Scattering in Warm Dense Matter

Theory of X-ray Thomson Scattering in Warm Dense Matter PDF Author: Kathrin Wünsch
Publisher:
ISBN:
Category :
Languages : en
Pages : 0

Book Description


Modeling X-ray Thomson Scattering Spectra of Warm Dense Matter

Modeling X-ray Thomson Scattering Spectra of Warm Dense Matter PDF Author:
Publisher:
ISBN:
Category :
Languages : en
Pages :

Book Description


X-ray Thomson Scattering Measurements of Warm Dense Matter

X-ray Thomson Scattering Measurements of Warm Dense Matter PDF Author:
Publisher:
ISBN:
Category :
Languages : en
Pages : 103

Book Description


Simulations of X-ray Thomson Scattering From Warm Dense Matter

Simulations of X-ray Thomson Scattering From Warm Dense Matter PDF Author: G. S. N. Naz
Publisher:
ISBN:
Category :
Languages : en
Pages :

Book Description


Probing the Dynamic Response of Dense Matter with X-ray Thomson Scattering

Probing the Dynamic Response of Dense Matter with X-ray Thomson Scattering PDF Author: David Alan Chapman
Publisher:
ISBN:
Category :
Languages : en
Pages :

Book Description


Using Collective X-ray Thomson Scattering to Measure Temperature and Density of Warm Dense Matter

Using Collective X-ray Thomson Scattering to Measure Temperature and Density of Warm Dense Matter PDF Author:
Publisher:
ISBN:
Category :
Languages : en
Pages : 11

Book Description
Collective x-ray Thomson scattering allows measuring plasmons, i.e electron plasma oscillations (Langmuir waves). This is manifest in the appearance of spectrally up- and down-shifted spectral features in addition to the Rayleigh signal. The ratio of the up- and down-shifted signals is directly related to detailed balance, allowing to determine the plasma temperature from first principles. The spectral shift of the plasmon signals is sensitive to temperature and electron density. We discuss the experimental considerations that have to be fulfilled to observe plasmon signals with x-ray Thomson scattering. As an example, we describe an experiment that used the Cl Ly-[alpha] x-ray line at 2.96 keV to measure collective Thomson scattering from solid beryllium, isochorically heated to 18 eV. Since temperature measurement based on detailed balance is based on first principles, this method is important to validate models that, for example, calculate the static ion-ion structure factor S{sub ii}(k).