Jennifer Fowlie

Jennifer Fowlie

Stanford University

H-index: 11

North America-United States

About Jennifer Fowlie

Jennifer Fowlie, With an exceptional h-index of 11 and a recent h-index of 11 (since 2020), a distinguished researcher at Stanford University, specializes in the field of Complex oxide heterostructures.

His recent articles reflect a diverse array of research interests and contributions to the field:

Richness of spiral magnetic states in strontium ferrite thin films

Operando electrical transport during topotactic reduction of nickelate superconductors

Structural study of nickelate based heterostructures

Mapping orthorhombic domains with geometrical phase analysis in rare-earth nickelate heterostructures

Layered metals as polarized transparent conductors

Effects of rare-earth magnetism on the superconducting upper critical field in infinite-layer nickelates

Electronic Coupling of Metal‐to‐Insulator Transitions in Nickelate‐Based Heterostructures

Metal–insulator transition in composition-tuned nickel oxide films

Jennifer Fowlie Information

University

Position

___

Citations(all)

818

Citations(since 2020)

744

Cited By

299

hIndex(all)

11

hIndex(since 2020)

11

i10Index(all)

11

i10Index(since 2020)

11

Email

University Profile Page

Google Scholar

Jennifer Fowlie Skills & Research Interests

Complex oxide heterostructures

Top articles of Jennifer Fowlie

Richness of spiral magnetic states in strontium ferrite thin films

Bulletin of the American Physical Society

2024/3/7

Operando electrical transport during topotactic reduction of nickelate superconductors

Bulletin of the American Physical Society

2024/3/4

Structural study of nickelate based heterostructures

Apl Materials

2024/3/1

Mapping orthorhombic domains with geometrical phase analysis in rare-earth nickelate heterostructures

Apl Materials

2024/3/1

Layered metals as polarized transparent conductors

Nature Communications

2023/5/30

Effects of rare-earth magnetism on the superconducting upper critical field in infinite-layer nickelates

Science advances

2023/5/17

Electronic Coupling of Metal‐to‐Insulator Transitions in Nickelate‐Based Heterostructures

Advanced Electronic Materials

2023/5

Bernat Mundet
Bernat Mundet

H-Index: 11

Jennifer Fowlie
Jennifer Fowlie

H-Index: 6

Metal–insulator transition in composition-tuned nickel oxide films

Journal of Physics: Condensed Matter

2023/4/27

Coupling of magnetic phases at nickelate interfaces

Physical Review Materials

2023/6/27

Jennifer Fowlie
Jennifer Fowlie

H-Index: 6

Probing the Structural and Electronic Couplings in Rare-earth Nickelate Superlattices by STEM-EELS

Microscopy and Microanalysis

2022/8

Intrinsic magnetism in superconducting infinite-layer nickelates

Nature Physics

2022/9

Evidence for nodal superconductivity in infinite-layer nickelates

arXiv preprint arXiv:2201.12971

2022/1/31

Machines for materials and materials for machines: Metal-insulator transitions and artificial intelligence

Frontiers in Physics

2021/12/15

Dynamics of the electrically induced insulator-to-metal transition in rare-earth nickelates

Physical Review B

2021/10/22

Crossover between distinct symmetries in solid solutions of rare earth nickelates

Apl Materials

2021/8/1

Near-atomic-scale mapping of electronic phases in rare earth nickelate superlattices

Nano letters

2021/3/8

Length scales of interfacial coupling between metal and insulator phases in oxides

APS March Meeting Abstracts

2021

Optical properties of films tuned from compressive to tensile strain

Physical Review B

2020/10/29

Probing photoinduced rearrangements in the magnetic spiral with polarization-sensitive ultrafast resonant soft x-ray scattering

Physical review B

2020/7/22

Vibrational properties of LaNiO3 films in the ultrathin regime

APL Materials

2020/6/1

See List of Professors in Jennifer Fowlie University(Stanford University)