M P M Dean
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Explore the profile of M P M Dean including associated specialties, affiliations and a list of published articles.
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31
Citations
174
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Recent Articles
1.
He W, Shen Y, Wohlfeld K, Sears J, Li J, Pelliciari J, et al.
Nat Commun
. 2024 Apr;
15(1):3496.
PMID: 38664432
Magnetic van der Waals (vdW) materials have opened new frontiers for realizing novel many-body phenomena. Recently NiPS has received intense interest since it hosts an excitonic quasiparticle whose properties appear...
2.
Li X, Tu S, Chaix L, Fawaz C, dAstuto M, Li X, et al.
Phys Rev Lett
. 2024 Feb;
132(5):056002.
PMID: 38364146
We investigated the high energy spin excitations in electron-doped La_{2-x}Ce_{x}CuO_{4}, a cuprate superconductor, by resonant inelastic x-ray scattering (RIXS) measurements. Efforts were paid to disentangle the paramagnon signal from non-spin-flip...
3.
Fabbris G, Meyers D, Shen Y, Bisogni V, Zhang J, Mitchell J, et al.
Sci Data
. 2023 Mar;
10(1):174.
PMID: 36991033
Ruddlesden-Popper and reduced Ruddlesden-Popper nickelates are intriguing candidates for mimicking the properties of high-temperature superconducting cuprates. The degree of similarity between these nickelates and cuprates has been the subject of...
4.
Shen Y, Sears J, Fabbris G, Weichselbaum A, Yin W, Zhao H, et al.
Phys Rev Lett
. 2022 Dec;
129(20):207201.
PMID: 36461990
Spinons are well known as the elementary excitations of one-dimensional antiferromagnetic chains, but means to realize spinons in higher dimensions is the subject of intense research. Here, we use resonant...
5.
Mazzone D, Shen Y, Suwa H, Fabbris G, Yang J, Zhang S, et al.
Nat Commun
. 2022 Feb;
13(1):913.
PMID: 35177583
Excitonic insulators are usually considered to form via the condensation of a soft charge mode of bound electron-hole pairs. This, however, presumes that the soft exciton is of spin-singlet character....
6.
Li H, Zhang T, Said A, Fabbris G, Mazzone D, Yan J, et al.
Nat Commun
. 2021 Jun;
12(1):3513.
PMID: 34112804
The Kitaev quantum spin liquid epitomizes an entangled topological state, for which two flavors of fractionalized low-energy excitations are predicted: the itinerant Majorana fermion and the Z gauge flux. It...
7.
Shen Y, Fabbris G, Miao H, Cao Y, Meyers D, Mazzone D, et al.
Phys Rev Lett
. 2021 May;
126(17):177601.
PMID: 33988428
Revealing the predominant driving force behind symmetry breaking in correlated materials is sometimes a formidable task due to the intertwined nature of different degrees of freedom. This is the case...
8.
Lin J, Villar Arribi P, Fabbris G, Botana A, Meyers D, Miao H, et al.
Phys Rev Lett
. 2021 Mar;
126(8):087001.
PMID: 33709756
The discovery of superconductivity in a d^{9-δ} nickelate has inspired disparate theoretical perspectives regarding the essential physics of this class of materials. A key issue is the magnitude of the...
9.
Lin J, Miao H, Mazzone D, Gu G, Nag A, Walters A, et al.
Phys Rev Lett
. 2020 Jun;
124(20):207005.
PMID: 32501068
The discovery of charge-density-wave-related effects in the resonant inelastic x-ray scattering spectra of cuprates holds the tantalizing promise of clarifying the interactions that stabilize the electronic order. Here, we report...
10.
Zhang T, Miao H, Wang Q, Lin J, Cao Y, Fabbris G, et al.
Phys Rev Lett
. 2020 Jan;
123(24):245302.
PMID: 31922848
While condensed matter systems host both fermionic and bosonic quasiparticles, reliably predicting and empirically verifying topological states is only mature for Fermionic electronic structures, leaving topological Bosonic excitations sporadically explored....