Christiane Koch

About Christiane Koch

Christiane Koch, With an exceptional h-index of 42 and a recent h-index of 28 (since 2020), a distinguished researcher at Freie Universität Berlin, specializes in the field of quantum dynamics, quantum control, molecular physics, open quantum systems, quantum information sciences.

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

Improving potential energy surfaces using measured Feshbach resonance states

Quantum control of rovibrational dynamics and application to light-induced molecular chirality

Determining the ability for universal quantum computing: Testing controllability via dimensional expressivity

Fast and robust cat state preparation utilizing higher order nonlinearities

Chaotic fluctuations in a universal set of transmon qubit gates

Dilute measurement-induced cooling into many-body ground states

Optimizing for an arbitrary Schrödinger cat state

Improving Potential Energy Surfaces Using Experimental Feshbach Resonance Tomography

Christiane Koch Information

University

Position

Professor of Theoretical Physics

Citations(all)

5991

Citations(since 2020)

3435

Cited By

3968

hIndex(all)

42

hIndex(since 2020)

28

i10Index(all)

93

i10Index(since 2020)

67

Email

University Profile Page

Google Scholar

Christiane Koch Skills & Research Interests

quantum dynamics

quantum control

molecular physics

open quantum systems

quantum information sciences

Top articles of Christiane Koch

Improving potential energy surfaces using measured Feshbach resonance states

Science Advances

2024/3/1

Quantum control of rovibrational dynamics and application to light-induced molecular chirality

Physical Review A

2024/1/16

Determining the ability for universal quantum computing: Testing controllability via dimensional expressivity

Quantum

2023/12/21

Fast and robust cat state preparation utilizing higher order nonlinearities

arXiv preprint arXiv:2312.05218

2023/12/8

Chaotic fluctuations in a universal set of transmon qubit gates

arXiv preprint arXiv:2311.14592

2023/11/24

Dilute measurement-induced cooling into many-body ground states

arXiv preprint arXiv:2311.05258

2023/11/9

Optimizing for an arbitrary Schrödinger cat state

Physical Review Research

2023/10/17

Improving Potential Energy Surfaces Using Experimental Feshbach Resonance Tomography

arXiv preprint arXiv:2309.16491

2023/9/28

Graph test of controllability in qubit arrays: a systematic way to determine the minimum number of external controls

Quantum Science and Technology

2023/7/10

Tomography of Feshbach resonance states

Science

2023/4/7

Correction: Increasing ion yield circular dichroism in femtosecond photoionisation using optimal control theory

Physical Chemistry Chemical Physics

2023

Optimal control for Hamiltonian parameter estimation in non-commuting and bipartite quantum dynamics

SciPost Physics

2022/12/8

Marcus Cramer
Marcus Cramer

H-Index: 23

Christiane Koch
Christiane Koch

H-Index: 25

Pump-probe spectroscopy of chiral vibrational dynamics

Science Advances

2022/12/7

Quantum optimal control in quantum technologies. Strategic report on current status, visions and goals for research in Europe

2022/12/1

Rydberg Atom-Enabled Spectroscopy of Polar Molecules via Förster Resonance Energy Transfer

The Journal of Physical Chemistry Letters

2022/11/11

Reservoir-engineering shortcuts to adiabaticity

Physical Review Research

2022/7/5

Lie algebra for rotational subsystems of a driven asymmetric top

Journal of Physics A: Mathematical and Theoretical

2022/5/11

Full quantum control of enantiomer-selective state transfer in chiral molecules despite degeneracy

Communications Physics

2022/5/6

Rational pulse design for enantiomer-selective microwave three-wave mixing

Symmetry

2022/4/24

Engineering strong beamsplitter interaction between bosonic modes via quantum optimal control theory

Physical Review Research

2022/4/20

See List of Professors in Christiane Koch University(Freie Universität Berlin)

Co-Authors

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