Patrick Kirchmann

Patrick Kirchmann

Stanford University

H-index: 32

North America-United States

About Patrick Kirchmann

Patrick Kirchmann, With an exceptional h-index of 32 and a recent h-index of 25 (since 2020), a distinguished researcher at Stanford University, specializes in the field of solid state physics, time-resolved photoemission.

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

Ultrafast X-Ray Scattering Reveals Composite Amplitude Collective Mode in the Weyl Charge Density Wave Material

Signatures of the exciton gas phase and its condensation in monolayer 1T-ZrTe2

Influence of local symmetry on lattice dynamics coupled to topological surface states

Probing topological phase transitions using high-harmonic generation

Connection between coherent phonons and electron-phonon coupling in Sb (111)

All-optical probe of three-dimensional topological insulators based on high-harmonic generation by circularly polarized laser fields

Ultrafast formation of domain walls of a charge density wave in

Quantum-well states in fractured crystals of the heavy-fermion material

Patrick Kirchmann Information

University

Position

Staff Scientist, SIMES/SLAC National Accelerator Laboratory

Citations(all)

3804

Citations(since 2020)

2027

Cited By

2603

hIndex(all)

32

hIndex(since 2020)

25

i10Index(all)

43

i10Index(since 2020)

36

Email

University Profile Page

Google Scholar

Patrick Kirchmann Skills & Research Interests

solid state physics

time-resolved photoemission

Top articles of Patrick Kirchmann

Ultrafast X-Ray Scattering Reveals Composite Amplitude Collective Mode in the Weyl Charge Density Wave Material

Physical review letters

2023/8/14

Signatures of the exciton gas phase and its condensation in monolayer 1T-ZrTe2

Nature Communications

2023/2/27

Influence of local symmetry on lattice dynamics coupled to topological surface states

Physical Review B

2023/1/12

Connection between coherent phonons and electron-phonon coupling in Sb (111)

Physical Review B

2022/4/27

All-optical probe of three-dimensional topological insulators based on high-harmonic generation by circularly polarized laser fields

Nano Letters

2021/10/22

Ultrafast formation of domain walls of a charge density wave in

Physical Review B

2021/2/15

Quantum-well states in fractured crystals of the heavy-fermion material

Physical Review B

2020/9/8

Tuning time and energy resolution in time-resolved photoemission spectroscopy with nonlinear crystals

Journal of Applied Physics

2020/9/7

See List of Professors in Patrick Kirchmann University(Stanford University)

Co-Authors

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