Maurits W Haverkort
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Explore the profile of Maurits W Haverkort including associated specialties, affiliations and a list of published articles.
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14
Citations
61
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Recent Articles
1.
Schacherl B, Tagliavini M, Kaufmann-Heimeshoff H, Gottlicher J, Mazzanti M, Popa K, et al.
Nat Commun
. 2025 Feb;
16(1):1221.
PMID: 39929821
The actinides possess a complex electronic structure, making their chemical and physical properties among the least understood in the periodic table. Advanced spectroscopic tools, able to obtain deep insights into...
2.
Christovam D, Ferreira-Carvalho M, Marino A, Sundermann M, Takegami D, Melendez-Sans A, et al.
Phys Rev Lett
. 2024 Feb;
132(4):046401.
PMID: 38335370
CeRh_{2}As_{2} is a new multiphase superconductor with strong suggestions for an additional itinerant multipolar ordered phase. The modeling of the low-temperature properties of this heavy-fermion compound requires a quartet Ce^{3+}...
3.
Retegan M, Jafri S, Curti L, Lisnard L, Otero E, Riviere E, et al.
Inorg Chem
. 2023 Nov;
62(46):18864-18877.
PMID: 37942765
The potassium hexacyanoferrate(III), K[Fe(CN)], is known for its exceptional magnetic anisotropy among the 3d transition metal series. The Fe(III) ions are in the = 1/2 low spin state imposed by...
4.
Elnaggar H, Nag A, Haverkort M, Garcia-Fernandez M, Walters A, Wang R, et al.
Nat Commun
. 2023 May;
14(1):2749.
PMID: 37173301
A photon carrying one unit of angular momentum can change the spin angular momentum of a magnetic system with one unit (ΔM = ±1) at most. This implies that a...
5.
Tcakaev A, Rubrecht B, Facio J, Zabolotnyy V, Corredor L, Folkers L, et al.
Adv Sci (Weinh)
. 2023 Feb;
10(10):e2203239.
PMID: 36802132
The recent realizations of the quantum anomalous Hall effect (QAHE) in MnBi Te and MnBi Te benchmark the (MnBi Te )(Bi Te ) family as a promising hotbed for further...
6.
Rupprecht P, Aufleger L, Heinze S, Magunia A, Ding T, Rebholz M, et al.
Phys Rev Lett
. 2022 May;
128(15):153001.
PMID: 35499899
Electronic interactions play a fundamental role in atoms, molecular structure and reactivity. We introduce a general concept to control the effective electronic exchange interaction with intense laser fields via coupling...
7.
Elnaggar H, Haverkort M, Hamed M, Dhesi S, de Groot F
J Synchrotron Radiat
. 2021 Jan;
28(Pt 1):247-258.
PMID: 33399575
A procedure to build the optical conductivity tensor that describes the full magneto-optical response of the system from experimental measurements is presented. Applied to the Fe L-edge of a 38.85 ...
8.
Amorese A, Sundermann M, Leedahl B, Marino A, Takegami D, Gretarsson H, et al.
Proc Natl Acad Sci U S A
. 2020 Nov;
117(48):30220-30227.
PMID: 33203673
Using inelastic X-ray scattering beyond the dipole limit and hard X-ray photoelectron spectroscopy we establish the dual nature of the U [Formula: see text] electrons in U[Formula: see text] (M...
9.
Leedahl B, Sundermann M, Amorese A, Severing A, Gretarsson H, Zhang L, et al.
Nat Commun
. 2019 Dec;
10(1):5447.
PMID: 31784516
The one-dimensional cobaltate Ca[Formula: see text]Co[Formula: see text]O[Formula: see text] is an intriguing material having an unconventional magnetic structure, displaying quantum tunneling phenomena in its magnetization. Using a newly developed...
10.
Zimmermann P, Green R, Haverkort M, de Groot F
J Synchrotron Radiat
. 2018 May;
25(Pt 3):899-905.
PMID: 29714203
Some initial instructions for the Quanty4RIXS program written in MATLAB are provided. The program assists in the calculation of 1s 2p RIXS and 1s 2p RIXS-MCD spectra using Quanty. Furthermore,...