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Jill A Miwa

Explore the profile of Jill A Miwa including associated specialties, affiliations and a list of published articles. Areas
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Articles 33
Citations 274
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Recent Articles
1.
Jones A, Majchrzak P, Volckaert K, Biswas D, Vad Andersen J, Hoffmann S, et al.
Rev Sci Instrum . 2025 Feb; 96(2). PMID: 40019339
Angle-resolved photoemission spectroscopy (ARPES) with spatial resolution is emerging as a powerful investigative tool for the study of operational mesoscale devices and quantum materials. Here, we introduce AU-SGM4, an extreme...
2.
Jiang Z, Lee D, Jones A, Park Y, Hsieh K, Majchrzak P, et al.
ACS Nano . 2025 Jan; 19(2):2379-2387. PMID: 39788551
Superlattices from twisted graphene mono- and bilayer systems give rise to on-demand many-body states such as Mott insulators and unconventional superconductors. These phenomena are ascribed to a combination of flat...
3.
Liu L, Ji Y, Bianchi M, Hus S, Li Z, Balog R, et al.
Nat Mater . 2024 Aug; 23(10):1339-1346. PMID: 39191980
Most two-dimensional (2D) materials experimentally studied so far have hexagons as their building blocks. Only a few exceptions, such as PdSe, are lower in energy in pentagonal phases and exhibit...
4.
Ulstrup S, In t Veld Y, Miwa J, Jones A, McCreary K, Robinson J, et al.
Nat Commun . 2024 May; 15(1):3845. PMID: 38714749
Harnessing electronic excitations involving coherent coupling to bosonic modes is essential for the design and control of emergent phenomena in quantum materials. In situations where charge carriers induce a lattice...
5.
Mazzola F, Brzezicki W, Mercaldo M, Guarino A, Bigi C, Miwa J, et al.
Nature . 2024 Feb; 626(8000):752-758. PMID: 38326617
The relation between crystal symmetries, electron correlations and electronic structure steers the formation of a large array of unconventional phases of matter, including magneto-electric loop currents and chiral magnetism. The...
6.
Volckaert K, Majchrzak P, Biswas D, Jones A, Bianchi M, Jiang Z, et al.
Adv Mater . 2023 May; 35(36):e2301907. PMID: 37204117
Modification of the electronic structure of quantum matter by ad atom deposition allows for directed fundamental design of electronic and magnetic properties. This concept is utilized in the present study...
7.
Dreher P, Wan W, Chikina A, Bianchi M, Guo H, Harsh R, et al.
ACS Nano . 2021 Nov; 15(12):19430-19438. PMID: 34846856
Collective electronic states such as the charge density wave (CDW) order and superconductivity (SC) respond sensitively to external perturbations. Such sensitivity is dramatically enhanced in two dimensions (2D), where 2D...
8.
Biswas D, Jones A, Majchrzak P, Choi B, Lee T, Volckaert K, et al.
Nano Lett . 2021 Feb; 21(5):1968-1975. PMID: 33600187
The transition-metal dichalcogenide VSe exhibits an increased charge density wave transition temperature and an emerging insulating phase when thinned to a single layer. Here, we investigate the interplay of electronic...
9.
Curcio D, Jones A, Muzzio R, Volckaert K, Biswas D, Sanders C, et al.
Phys Rev Lett . 2020 Dec; 125(23):236403. PMID: 33337178
The presence of an electrical transport current in a material is one of the simplest and most important realizations of nonequilibrium physics. The current density breaks the crystalline symmetry and...
10.
Fortin-Deschenes M, Zschiesche H, Mentes T, Locatelli A, Jacobberger R, Genuzio F, et al.
Nano Lett . 2020 Oct; 20(11):8258-8266. PMID: 33026227
With their ns2 np3 valence electronic configuration, pnictogens are the only system to crystallize in layered van der Waals (vdW) and quasi-vdW structures throughout the group. Light pnictogens crystallize in...