Michael Kues

About Michael Kues

Michael Kues, With an exceptional h-index of 25 and a recent h-index of 23 (since 2020), a distinguished researcher at Leibniz Universität Hannover, specializes in the field of Nonlinear Optics, Quantum Optics, Integrated Photonics.

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

Exploring the fundamental limits of integrated beam splitters with arbitrary phase via topology optimization

Multi-photon-contributed enhanced visibility of spectral two-photon quantum interference between thermal-gradient states of light

Method and system for generation and control of high-dimensional multi-partite quantum states

On-chip temporal pulse pattern generation and fiber propagation: Multidimensional wave-packet control and characterization

Caractérisation et contrôle intelligent des effets non-linéaires en optique guidée

Scalable Quantum Signal Processing with Integrated Photonics and Fiber-based Modules

Fully On-chip Laser-integrated Quantum Source of Entangled Photon States

Tailoring photon pair emission characteristics via bi-chromatic excitation of an integrated nonlinear cavity

Michael Kues Information

University

Position

___

Citations(all)

5788

Citations(since 2020)

4932

Cited By

2604

hIndex(all)

25

hIndex(since 2020)

23

i10Index(all)

35

i10Index(since 2020)

28

Email

University Profile Page

Google Scholar

Michael Kues Skills & Research Interests

Nonlinear Optics

Quantum Optics

Integrated Photonics

Top articles of Michael Kues

Exploring the fundamental limits of integrated beam splitters with arbitrary phase via topology optimization

Optics Letters

2024/3/1

Michael Kues
Michael Kues

H-Index: 15

Antonio Calà Lesina
Antonio Calà Lesina

H-Index: 11

Multi-photon-contributed enhanced visibility of spectral two-photon quantum interference between thermal-gradient states of light

2023/3/9

Method and system for generation and control of high-dimensional multi-partite quantum states

2023/1/17

On-chip temporal pulse pattern generation and fiber propagation: Multidimensional wave-packet control and characterization

2023/7/17

Caractérisation et contrôle intelligent des effets non-linéaires en optique guidée

2023/7/5

Scalable Quantum Signal Processing with Integrated Photonics and Fiber-based Modules

2023/7/2

Fully On-chip Laser-integrated Quantum Source of Entangled Photon States

2023/6/26

Tailoring photon pair emission characteristics via bi-chromatic excitation of an integrated nonlinear cavity

2023/6/26

Hong-Ou-Mandel Effect between a Thermal Field and a Heralded Single-photon State: Improved visibility by Multiphoton Components

2023/6/26

Generative Adversarial Learning boosted by a Photonic Quantum Frequency Coprocessor

2023/6/26

Michael Kues
Michael Kues

H-Index: 15

Manipulation of single-photon wave packets via Kerr-nonlinear refractive index fronts

2023/6/26

Inverse design of integrated phase-tunable beam couplers

2023/6/26

Michael Kues
Michael Kues

H-Index: 15

Antonio Calà Lesina
Antonio Calà Lesina

H-Index: 11

Ultrasensitive Dispersive Fourier Transform Characterization of Nonlinear Instabilities

2023/6/26

Modulation Instability Control via Optical Seeding and Machine Learning Optimization

2023/6/26

Raktim Haldar
Raktim Haldar

H-Index: 3

Michael Kues
Michael Kues

H-Index: 15

Soliton compression and supercontinuum spectra in nonlinear diamond photonics

Diamond and Related Materials

2023/6/1

All-optical control of single-photon wavepackets via Kerr nonlinearity induced refractive index fronts

2023/5/7

Simple description of ultrafast single-photon wavepackets interacting with moving fronts

2023/5/7

Smart Nonlinear Photonics: From On-chip Pulse Processing to Tailored Nonlinear Fiber Propagation

2023/5/7

Fully On-chip Laser-integrated Entangled Photon Pair Source

2023/4/21

Fully on-chip photonic turnkey quantum source for entangled qubit/qudit state generation

Nature Photonics

2023/4/17

See List of Professors in Michael Kues University(Leibniz Universität Hannover)