Jan Isberg

About Jan Isberg

Jan Isberg, With an exceptional h-index of 35 and a recent h-index of 24 (since 2020), a distinguished researcher at Uppsala Universitet, specializes in the field of Condensed matter Physics, Solid state electronics, Applied Mathematics.

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

Enhanced Hall mobility in graphene-on-electronic-grade diamond

Optical detection of valley-polarized electron diffusion in diamond

Determination of the acoustic phonon deformation potentials in diamond

Intrinsic Mobility of Low-Density Electrons in Photoexcited Diamond

Graphene FET on diamond for high-frequency electronics

Investigation of photoexcitation energy impact on electron mobility in single crystalline CdTe

Carrier Scattering Mechanisms: Identification via the Scaling Properties of the Boltzmann Transport Equation

A valleytronic diamond transistor: electrostatic control of valley currents and charge-state manipulation of NV centers

Jan Isberg Information

University

Position

Professor

Citations(all)

5689

Citations(since 2020)

2078

Cited By

4445

hIndex(all)

35

hIndex(since 2020)

24

i10Index(all)

69

i10Index(since 2020)

51

Email

University Profile Page

Google Scholar

Jan Isberg Skills & Research Interests

Condensed matter Physics

Solid state electronics

Applied Mathematics

Top articles of Jan Isberg

Enhanced Hall mobility in graphene-on-electronic-grade diamond

Applied Physics Letters

2023/7/3

Optical detection of valley-polarized electron diffusion in diamond

Materials for Quantum Technology

2023/4/20

Determination of the acoustic phonon deformation potentials in diamond

Physical Review B

2022/7/19

Intrinsic Mobility of Low-Density Electrons in Photoexcited Diamond

Physical Review Applied

2022/3/23

Jan Isberg
Jan Isberg

H-Index: 22

Graphene FET on diamond for high-frequency electronics

IEEE Electron Device Letters

2021/12/28

Investigation of photoexcitation energy impact on electron mobility in single crystalline CdTe

Materials

2021/7/28

Carrier Scattering Mechanisms: Identification via the Scaling Properties of the Boltzmann Transport Equation

Advanced Theory and Simulations

2020/11/1

A valleytronic diamond transistor: electrostatic control of valley currents and charge-state manipulation of NV centers

Nano Letters

2020/12/18

Low-temperature mobility-lifetime product in synthetic diamond

Applied Physics Letters

2020/11/23

Saman Majdi
Saman Majdi

H-Index: 8

Jan Isberg
Jan Isberg

H-Index: 22

Diffusion-related lifetime and quantum efficiency of excitons in diamond

Physical Review B

2020/11/17

Jan Isberg
Jan Isberg

H-Index: 22

Improving electric power generation of a standalone wave energy converter via optimal electric load control

Energy

2020/11/15

Jens Engström
Jens Engström

H-Index: 17

Jan Isberg
Jan Isberg

H-Index: 22

Capturing the experimental behaviour of a point-absorber WEC by simplified numerical models

Journal of Fluids and Structures

2020/11/1

Jens Engström
Jens Engström

H-Index: 17

Jan Isberg
Jan Isberg

H-Index: 22

Comparison of wave energy park layouts by experimental and numerical methods

Journal of Marine Science and Engineering

2020/9/26

Jens Engström
Jens Engström

H-Index: 17

Jan Isberg
Jan Isberg

H-Index: 22

Advances and challenges in wave energy park optimization—a review

2020/3/6

Jens Engström
Jens Engström

H-Index: 17

Jan Isberg
Jan Isberg

H-Index: 22

On the calibration of a WEC-Sim model for heaving point absorbers

2020/2/13

Jan Isberg
Jan Isberg

H-Index: 22

Edward Ransley
Edward Ransley

H-Index: 12

See List of Professors in Jan Isberg University(Uppsala Universitet)

Co-Authors

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