Soft x-ray magnetic circular dichroism was used to study a paramagnetic bioinorganic system. We measured the Fe L edges of Pyrococcus furiosus rubredoxin, using circularly polarized synchrotron radiation, a split-coil superconducting magnet, low sample temperatures, and fluorescence detection. The observed dichroism effect is strong (30%) and in general agreement with the calculation. The method is element- and oxidation state-specific, and the data can be interpreted by established theoretical procedures. Soft x-ray magnetic circular dichroism demonstrates enormous potential as a probe for studying paramagnetic systems in biology, chemistry, and material science
The element specific magnetic moments of Gd and Fe in a gadoliniumirongarnet (Gd3Fe5O12) were probed...
The SUPERB experiment at the SURF II storage ring uses synchrotron radiation as a source of uv photo...
A material is said to exhibit dichroism if its photon absorption spectrum depends on the polarizatio...
Soft x-ray magnetic circular dichroism was used to study a paramagnetic bioinorganic system. We meas...
Recent developments in synchrotron radiation sources and end stations make x-ray magnetic circular d...
We discuss circular dichroism in the x-ray fluorescence spectra of magnetic systems in the light of ...
Abstract: the L2,3 x-ray fluorescence spectra of magnetized Fe and CO excited by circularly polarize...
The existence of novel magnetic circular dichroism in core-level x-ray emission is reported. By mean...
the L2,3 x-ray fluorescence spectra of magnetized Fe and Co excited by circularly polarized synchrot...
X-ray dichroism microscopy is a new method for microscopic mapping of magnetic domains at surfaces, ...
We report experiments demonstrating circular dichroism in the x-ray-fluorescence spectra of magnetic...
We demonstrate the feasibility of applying the novel soft-X-ray magnetic circular dichroism (SXMCD) ...
We demonstrate the feasibility of applying the novel soft-X-ray magnetic circular dichroism (SXMCD) ...
The spectroscopic analysis of X-ray magnetic circular dichroism (XMCD), which serves as strong and e...
Soft-x-ray magnetic circular dichroism (SXMCD) is a powerful tool to study the element and site spec...
The element specific magnetic moments of Gd and Fe in a gadoliniumirongarnet (Gd3Fe5O12) were probed...
The SUPERB experiment at the SURF II storage ring uses synchrotron radiation as a source of uv photo...
A material is said to exhibit dichroism if its photon absorption spectrum depends on the polarizatio...
Soft x-ray magnetic circular dichroism was used to study a paramagnetic bioinorganic system. We meas...
Recent developments in synchrotron radiation sources and end stations make x-ray magnetic circular d...
We discuss circular dichroism in the x-ray fluorescence spectra of magnetic systems in the light of ...
Abstract: the L2,3 x-ray fluorescence spectra of magnetized Fe and CO excited by circularly polarize...
The existence of novel magnetic circular dichroism in core-level x-ray emission is reported. By mean...
the L2,3 x-ray fluorescence spectra of magnetized Fe and Co excited by circularly polarized synchrot...
X-ray dichroism microscopy is a new method for microscopic mapping of magnetic domains at surfaces, ...
We report experiments demonstrating circular dichroism in the x-ray-fluorescence spectra of magnetic...
We demonstrate the feasibility of applying the novel soft-X-ray magnetic circular dichroism (SXMCD) ...
We demonstrate the feasibility of applying the novel soft-X-ray magnetic circular dichroism (SXMCD) ...
The spectroscopic analysis of X-ray magnetic circular dichroism (XMCD), which serves as strong and e...
Soft-x-ray magnetic circular dichroism (SXMCD) is a powerful tool to study the element and site spec...
The element specific magnetic moments of Gd and Fe in a gadoliniumirongarnet (Gd3Fe5O12) were probed...
The SUPERB experiment at the SURF II storage ring uses synchrotron radiation as a source of uv photo...
A material is said to exhibit dichroism if its photon absorption spectrum depends on the polarizatio...