Christian Heide

Christian Heide

Stanford University

H-index: 15

North America-United States

About Christian Heide

Christian Heide, With an exceptional h-index of 15 and a recent h-index of 14 (since 2020), a distinguished researcher at Stanford University, specializes in the field of Light-wave electronics, solid-state strong-field physics, quantum materials, ultrafast physics.

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

Giant room-temperature nonlinearities from a monolayer Janus topological semiconductor

Logic Gate Device

Ultrafast strong-field electron emission and collective effects at a one-dimensional nanostructure

High-harmonic generation from artificially stacked 2D crystals

Floquet engineering of strongly driven excitons in monolayer tungsten disulfide

Strong-Field Bloch Electron Interferometry for Band Structure Retrieval

Intense infrared lasers for strong-field science

In-Situ Nanoscale Focusing of Extreme Ultraviolet Solid-State High Harmonics

Christian Heide Information

University

Position

___

Citations(all)

981

Citations(since 2020)

882

Cited By

372

hIndex(all)

15

hIndex(since 2020)

14

i10Index(all)

18

i10Index(since 2020)

18

Email

University Profile Page

Google Scholar

Christian Heide Skills & Research Interests

Light-wave electronics

solid-state strong-field physics

quantum materials

ultrafast physics

Top articles of Christian Heide

Giant room-temperature nonlinearities from a monolayer Janus topological semiconductor

Nature Communications

2023/8/16

Logic Gate Device

2023/6/1

Ultrafast strong-field electron emission and collective effects at a one-dimensional nanostructure

ACS Photonics

2023/2/6

High-harmonic generation from artificially stacked 2D crystals

Nanophotonics

2023/2/2

Floquet engineering of strongly driven excitons in monolayer tungsten disulfide

Nature Physics

2023/2

Strong-Field Bloch Electron Interferometry for Band Structure Retrieval

arXiv preprint arXiv:2309.16313

2023/9/28

Christian Heide
Christian Heide

H-Index: 5

Peter Hommelhoff
Peter Hommelhoff

H-Index: 33

In-Situ Nanoscale Focusing of Extreme Ultraviolet Solid-State High Harmonics

Physical Review X

2022/12/28

Probing topological phase transitions using high-harmonic generation

Nature Photonics

2022/9

Probing electron-hole coherence in strongly driven 2D materials using high-harmonic generation

Optica

2022/5/20

Light-field control of real and virtual charge carriers

Nature

2022/5/12

Electronic coherence and coherent dephasing in the optical control of electrons in graphene

Nano Letters

2021/11/4

Optical current generation in graphene: CEP control vs. ω + 2ω control

Nanophotonics

2021/10/28

Christian Heide
Christian Heide

H-Index: 5

Peter Hommelhoff
Peter Hommelhoff

H-Index: 33

Polarization flipping of even-order harmonics in monolayer transition-metal dichalcogenides

Ultrafast Science

2021/8/20

Adiabaticity parameters for the categorization of light-matter interaction: From weak to strong driving

Physical Review A

2021/8/13

Christian Heide
Christian Heide

H-Index: 5

Peter Hommelhoff
Peter Hommelhoff

H-Index: 33

Generation of structured coherent extreme ultraviolet beams from an MgO crystal

Optics Express

2021/7/19

Length-dependence of light-induced currents in graphene

Journal of Physics B: Atomic, Molecular and Optical Physics

2020/6/19

Christian Heide
Christian Heide

H-Index: 5

Peter Hommelhoff
Peter Hommelhoff

H-Index: 33

Sub-cycle temporal evolution of light-induced electron dynamics in hexagonal 2D materials

Journal of Physics: Photonics

2020/4/10

Christian Heide
Christian Heide

H-Index: 5

Peter Hommelhoff
Peter Hommelhoff

H-Index: 33

Attosecond-fast internal photoemission

Nature Photonics

2020/4

Christian Heide
Christian Heide

H-Index: 5

Peter Hommelhoff
Peter Hommelhoff

H-Index: 33

Attosecond-fast electron dynamics in graphene and graphene-based interfaces

2020

Christian Heide
Christian Heide

H-Index: 5

See List of Professors in Christian Heide University(Stanford University)

Co-Authors

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