Plasma screening in mid-charged ions observed by K-shell line emission

M M. Šmíd O O. S. Humphries C C. Baehtz V V. Bouffetier E E. Brambrink T T. Burian V V. Cerantola M M. S. Cho T T. E. Cowan L L. Gaus M M. F. Gu V V. Hájková L L. Juha J J. Kaa Z Z. Konôpková M M. Kozlová H H. P. Le M M. Makita X X. Pan T T. R. Preston A A. Schropp J J.-P. Schwinkendorf H H. A. Scott R R. Štefaníková J J. Vorberger W W. Wang U U. Zastrau K K. Falk

Abstract

Abstract Dense plasma environment affects the electronic structure of ions via variations of the microscopic electrical fields, also known as plasma screening . This effect can be either estimated by simplified analytical models, or by computationally expensive and to date unverified numerical calculations. We have experimentally quantified plasma screening from the energy shifts of the bound-bound transitions in matter driven by the x-ray free electron laser (XFEL). This was enabled by identification of detailed electronic configurations of the observed K $$\upalpha$$ α , K $$\upbeta$$ β and K $$\upgamma$$ γ lines. This work paves the way for improving plasma screening models including connected effects like ionization potential depression and continuum lowering, which will advance the understanding of atomic physics in the Warm Dense Matter regime.

Article Details

Volume / Issue Vol. 16, Issue 1
Published February 10, 2026
ISSN 2045-2322
Publisher Nature Portfolio

Journal Info

Scientific Reports

Nature Portfolio

ISSN: 2045-2322 Open Access Life Sciences

Authors (28)

M

M. Šmíd

O

O. S. Humphries

C

C. Baehtz

V

V. Bouffetier

E

E. Brambrink

T

T. Burian

V

V. Cerantola

M

M. S. Cho

T

T. E. Cowan

L

L. Gaus

M

M. F. Gu

V

V. Hájková

L

L. Juha

J

J. Kaa

Z

Z. Konôpková

M

M. Kozlová

H

H. P. Le

M

M. Makita

X

X. Pan

T

T. R. Preston

A

A. Schropp

J

J.-P. Schwinkendorf

H

H. A. Scott

R

R. Štefaníková

J

J. Vorberger

W

W. Wang

U

U. Zastrau

K

K. Falk