Highlights

Journal Articles

2024

Field-induced bound-state condensation and spin-nematic phase in SrCu2(BO3)2 revealed by neutron scattering up to 25.9 T

E. Fogh; M. Nayak; O. Prokhnenko; M. Bartkowiak; K. Munakata et al. 

Nature Communications. 2024. Vol. 15, num. 1, p. 442. DOI : 10.1038/s41467-023-44115-z.

2023

Understanding unconventional magnetic order in a candidate axion insulator by resonant elastic x-ray scattering

J-R. Soh; A. Bombardi; F. Mila; M. C. Rahn; D. Prabhakaran et al. 

Nature Communications. 2023. Vol. 14, num. 1, p. 3387. DOI : 10.1038/s41467-023-39138-5.

Tuning magnetoelectricity in a mixed-anisotropy antiferromagnet

E. Fogh; B. Klemke; M. Reehuis; P. Bourges; C. Niedermayer et al. 

Nature Communications. 2023. Vol. 14, num. 1, p. 3408. DOI : 10.1038/s41467-023-39128-7.

2021

Diffusion in dense supercritical methane from quasi-elastic neutron scattering measurements

U. Ranieri; S. Klotz; R. Gaal; M. M. Koza; L. E. Bove 

Nature Communications. 2021. Vol. 12, num. 1, p. 1958. DOI : 10.1038/s41467-021-22182-4.

2020

Mahan excitons in room-temperature methylammonium lead bromide perovskites

T. Palmieri; E. Baldini; A. Steinhoff; A. Akrap; M. Kollar et al. 

Nature Communications. 2020. Vol. 11, num. 1, p. 850. DOI : 10.1038/s41467-020-14683-5.

2019

Time-reversal symmetry breaking type-II Weyl state in YbMnBi2

S. Borisenko; D. Evtushinsky; Q. Gibson; A. Yaresko; K. Koepernik et al. 

Nature Communications. 2019. Vol. 10, p. 3424. DOI : 10.1038/s41467-019-11393-5.

Strain-engineering Mott-insulating La2CuO4

O. Ivashko; M. Horio; W. Wan; N. B. Christensen; D. E. McNally et al. 

Nature Communications. 2019. Vol. 10, p. 786. DOI : 10.1038/s41467-019-08664-6.

2018

Probing multi-spinon excitations outside of the two-spinon continuum in the antiferromagnetic spin chain cuprate Sr2CuO3

J. Schlappa; U. Kumar; K. J. Zhou; S. Singh; M. Mourigal et al. 

Nature Communications. 2018. Vol. 9, p. 5394. DOI : 10.1038/s41467-018-07838-y.

Chemical tunnel-splitting-engineering in a dysprosium-based molecular nanomagnet

M. Sorensen; U. Hansen; M. Perfetti; K. Pedersen; E. Bartolome et al. 

Nature Communications. 2018. Vol. 9, p. 1292. DOI : 10.1038/s41467-018-03706-x.

Direct observation of orbital hybridisation in a cuprate superconductor

C. Matt; D. Sutter; A. Cook; Y. Sassa; M. Mansson et al. 

Nature Communications. 2018. Vol. 9, p. 972. DOI : 10.1038/s41467-018-03266-0.

2017

Hallmarks of Hunds coupling in the Mott insulator Ca2RuO4

D. Sutter; C. G. Fatuzzo; S. Moser; M. Kim; R. Fittipaldi et al. 

Nature Communications. 2017. Vol. 8, p. 15176. DOI : 10.1038/ncomms15176.

2016

Optically switched magnetism in photovoltaic perovskite CH3NH3(Mn:Pb)I-3

B. Nafradi; P. Szirmai; M. Spina; H. Lee; O. V. Yazyev et al. 

Nature Communications. 2016. Vol. 7, p. 13406. DOI : 10.1038/ncomms13406.

Magnetodielectric detection of magnetic quadrupole order in Ba(TiO)Cu4(PO4)4 with Cu4O12 square cupolas

K. Kimura; P. Babkevich; M. Sera; M. Toyoda; K. Yamauchi et al. 

Nature Communications. 2016. Vol. 7, p. 13039. DOI : 10.1038/ncomms13039.

Direct evidence for charge stripes in a layered cobalt oxide

P. Babkevich; P. G. Freeman; M. Enderle; D. Prabhakaran; A. T. Boothroyd 

Nature Communications. 2016. Vol. 7, p. 11632. DOI : 10.1038/ncomms11632.

Electromagnon dispersion probed by inelastic X-ray scattering in LiCrO2

S. Toth; B. Wehinger; K. Rolfs; T. Birol; U. Stuhr et al. 

Nature Communications. 2016. Vol. 7, p. 13547. DOI : 10.1038/ncomms13547.

2015

A new class of chiral materials hosting magnetic skyrmions beyond room temperature

Y. Tokunaga; X. Z. Yu; J. S. White; H. M. Rønnow; D. Morikawa et al. 

Nature Communications. 2015. Vol. 6, p. 7638. DOI : 10.1038/ncomms8638.

2014

Anisotropic softening of magnetic excitations along the nodal direction in superconducting cuprates

M. Guarise; B. Dalla Piazza; H. Berger; E. Giannini; T. Schmitt et al. 

Nature Communications. 2014. Vol. 5, p. 5760. DOI : 10.1038/ncomms6760.

Journal Articles

2016

Robust metastable skyrmions and their triangular-square lattice structural transition in a high-temperature chiral magnet

K. Karube; J. S. White; N. Reynolds; J. L. Gavilano; H. Oike et al. 

Nature Materials. 2016. Vol. 15, num. 12, p. 1237 – 1242. DOI : 10.1038/Nmat4752.

2015

Neel-type skyrmion lattice with confined orientation in the polar magnetic semiconductor GaV4S8

I. Kezsmarki; S. Bordacs; P. Milde; E. Neuber; L. M. Eng et al. 

Nature Materials. 2015. Vol. 14, num. 11, p. 1116 – 1122. DOI : 10.1038/Nmat4402.

2012

Spin excitations in a single La2CuO4 layer

M. P. M. Dean; R. S. Springell; C. Monney; K. J. Zhou; J. Pereiro et al. 

Nature Materials. 2012. Vol. 11, p. 850 – 854. DOI : 10.1038/nmat3409.

2005

Three-dimensionality of field-induced magnetism in a high-temperature superconductor

B. Lake; K. Lefmann; N. B. Christensen; G. Aeppli; D. F. McMorrow et al. 

Nature Materials. 2005. Vol. 4, num. 9, p. 658 – 662. DOI : 10.1038/nmat1452.

Spiral spin-liquid and the emergence of a vortex-like state in MnSc2S4

S. Gao; O. Zaharko; V. Tsurkan; Y. Su; J. S. White et al. 

Nature Physics. 2017. Vol. 13, num. 2, p. 157 – 161. DOI : 10.1038/Nphys3914.

Fractional excitations in the square-lattice quantum antiferromagnet

B. D. Piazza; M. Mourigal; N. B. Christensen; G. J. Nilsen; P. Tregenna-Piggott et al. 

Nature Physics. 2015. Vol. 11, num. 1, p. 62 – 68. DOI : 10.1038/Nphys3172.

Fractional spinon excitations in the quantum Heisenberg antiferromagnetic chain

M. Mourigal; M. Enderle; A. Kloepperpieper; J-S. Caux; A. Stunault et al. 

Nature Physics. 2013. Vol. 9, num. 7, p. 435 – 441. DOI : 10.1038/Nphys2652.

Two energy scales in the spin excitations of the high-temperature superconductor La2-xSrxCuO4

B. Vignolle; S. M. Hayden; D. F. McMorrow; H. M. Ronnow; B. Lake et al. 

Nature Physics. 2007. Vol. 3, p. 163 – 167. DOI : 10.1038/nphys546.

Bespoke open databases: cheaper and easier to analyse

N. Obwegeser; H. M. Ronnow; T. Yokoi 

Nature. 2021. Vol. 596, num. 7872, p. 343 – 343. DOI : 10.1038/d41586-021-02234-x.

A quantum magnetic analogue to the critical point of water

J. Larrea Jimenez; S. P. G. Crone; E. Fogh; M. E. Zayed; R. Lortz et al. 

Nature. 2021. Vol. 592, num. 7854, p. 370 – 375. DOI : 10.1038/s41586-021-03411-8.

Nitrogen reduction and functionalization by a multimetallic uranium nitride complex

M. Falcone; L. Chatelain; R. Scopelliti; I. Živković; M. Mazzanti 

Nature. 2017. Vol. 547, num. 7663, p. 332 – 335. DOI : 10.1038/nature23279.

Spin-orbital separation in the quasi-one-dimensional Mott insulator Sr2CuO3

J. Schlappa; K. Wohlfeld; K. J. Zhou; M. Mourigal; M. W. Haverkort et al. 

Nature. 2012. Vol. 485, p. 82 – U108. DOI : 10.1038/nature10974.

Polarons and confinement of electronic motion to two dimensions in a layered manganite

H. M. Ronnow; C. Renner; G. Aeppli; T. Kimura; Y. Tokura 

Nature. 2006. Vol. 440, num. 7087, p. 1025 – 1028. DOI : 10.1038/nature04650.

Antiferromagnetic order induced by an applied magnetic field in a high-temperature superconductor

B. Lake; H. M. Ronnow; N. B. Christensen; G. Aeppli; K. Lefmann et al. 

Nature. 2002. Vol. 415, num. 6869, p. 299 – 302. DOI : 10.1038/415299a.

Topological magnon band structure of emergent Landau levels in a skyrmion lattice

T. Weber; D. M. Fobes; J. Waizner; P. Steffens; G. S. Tucker et al. 

Science. 2022. Vol. 375, num. 6584, p. 1025 – 1030. DOI : 10.1126/science.abe4441.

Dipolar Antiferromagnetism and Quantum Criticality in LiErF4

C. Kraemer; N. Nikseresht; J. O. Piatek; N. Tsyrulin; B. Dalla Piazza et al. 

Science. 2012. Vol. 336, p. 1416 – 1419. DOI : 10.1126/science.1221878.

Quantum phase transition of a magnet in a spin bath

H. M. Ronnow; R. Parthasarathy; J. Jensen; G. Aeppli; T. F. Rosenbaum et al. 

Science. 2005. Vol. 308, num. 5720, p. 389 – 392. DOI : 10.1126/science.1108317.

The role of bridging ligands in dinitrogen reduction and functionalization by uranium multimetallic complexes

M. Falcone; L. Barluzzi; J. Andrez; F. Fadaei Tirani; I. Zivkovic et al. 

Nature Chemistry. 2019. Vol. 11, p. 154 – 160. DOI : 10.1038/s41557-018-0167-8.

A Multi-Step Single-Crystal-to-Single-Crystal Bromodiacetylene Dimerization

T. Hoheisel; S. Schrettl; R. N. Marty; T. K. Todorova; C. Corminboeuf et al. 

Nature Chemistry. 2013. Vol. 5, num. 4, p. 327 – 334. DOI : 10.1038/nchem.1575.