Lasing of a cavity-based X-ray source

P Patrick Rauer I Immo Bahns B Bertram Friedrich S Sara Casalbuoni M Massimiliano Di Felice M Martin Dommach I Idoia Freijo Martin W Wolfgang Freund J Jan Grünert M Marc Guetg I Ivars Karpics S Suren Karabekyan A Andreas Koch N Naresh Kujala D Daniele La Civita J Jia Liu T Theophilos Maltezopoulos M Mikako Makita F Frank Mayet L Lukas Müller B Benoit Rio L Liubov Samoylova S Silja Schmidtchen M Matthias Scholz A Alessandro Silenzi V Vivienne Strauch D Daniel Thoden T Torsten Wohlenberg M Maurizio Vannoni F Fan Yang W Winfried Decking J Joerg Rossbach H Harald Sinn

Abstract

Abstract The invention of the laser transformed optics by providing intense, coherent light in the visible region, but extending this concept to X-rays has been hindered by a lack of suitable gain media and mirrors. Current hard X-ray free-electron laser (XFEL) facilities 1–5 overcome this by amplifying shot noise from a high-peak-current electron bunch via self-amplified spontaneous emission 6 in a single pass through long undulators, delivering very high brightness but with a noisy, multi-spiked temporal and spectral profile. Cavity-based XFELs (CBXFELs) 7–9 were proposed to close this gap by recirculating spectrally filtered X-ray pulses in a Bragg-reflecting cavity synchronized to a high-repetition-rate electron beam. Here we show lasing with multi-pass gain at 6.952 keV in a 132.8-m round-trip diamond-based Bragg cavity 10 at the European XFEL, matched to the 2.23-MHz bunch spacing of the superconducting accelerator 5 . Under stringent length and angular stability requirements, a ring-up in the cavity across successive bunches was observed, producing spectrally pure, microjoule-level pulses. This establishes the feasibility of CBXFELs in an accelerator environment and validates diamond Bragg optics for X-ray resonators. The demonstrated spectral purity opens a path to next-generation X-ray science, which demands highly coherent, stable sources.

Article Details

Journal Nature
Volume / Issue Vol. 650, Issue 8100
Published February 05, 2026
Pages 93-96
ISSN 0028-0836
Publisher Nature Portfolio

Journal Info

Nature

Nature Portfolio

ISSN: 0028-0836 Health Sciences

Authors (33)

P

Patrick Rauer

I

Immo Bahns

B

Bertram Friedrich

S

Sara Casalbuoni

M

Massimiliano Di Felice

M

Martin Dommach

I

Idoia Freijo Martin

W

Wolfgang Freund

J

Jan Grünert

M

Marc Guetg

I

Ivars Karpics

S

Suren Karabekyan

A

Andreas Koch

N

Naresh Kujala

D

Daniele La Civita

J

Jia Liu

T

Theophilos Maltezopoulos

M

Mikako Makita

F

Frank Mayet

L

Lukas Müller

B

Benoit Rio

L

Liubov Samoylova

S

Silja Schmidtchen

M

Matthias Scholz

A

Alessandro Silenzi

V

Vivienne Strauch

D

Daniel Thoden

T

Torsten Wohlenberg

M

Maurizio Vannoni

F

Fan Yang

W

Winfried Decking

J

Joerg Rossbach

H

Harald Sinn