Norbert F. Scherer

Norbert F. Scherer

University of Chicago

H-index: 64

North America-United States

About Norbert F. Scherer

Norbert F. Scherer, With an exceptional h-index of 64 and a recent h-index of 31 (since 2020), a distinguished researcher at University of Chicago, specializes in the field of active optical matter, plasmonics, nano-optics, photonics, cellular biophysics.

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

Electrodynamic Interference and Induced Polarization in Nanoparticle-Based Optical Matter Arrays

Advanced multi-dimensional SIM: aberration-free, high-speed 3D, multi-color, and deep learning based virtual multi-channel Imaging.

Aberration-free, multi-plane, multi-color, and deep learning-empowered virtual multi-channel structured illumination microscopy

Easily scalable multi-color DMD-based structured illumination microscopy

Generation of Robust Entanglement in Plasmonically Coupled Quantum Dots Driven by Quantum Squeezed Light

Tandem aberration correction optics (TACO) in wide-field structured illumination microscopy

Optical trapping with magnetic fields of light

Understanding and design of non-conservative optical matter systems using Markov state models

Norbert F. Scherer Information

University

Position

Professor of Chemistry

Citations(all)

14606

Citations(since 2020)

3470

Cited By

12562

hIndex(all)

64

hIndex(since 2020)

31

i10Index(all)

150

i10Index(since 2020)

77

Email

University Profile Page

University of Chicago

Google Scholar

View Google Scholar Profile

Norbert F. Scherer Skills & Research Interests

active optical matter

plasmonics

nano-optics

photonics

cellular biophysics

Top articles of Norbert F. Scherer

Title

Journal

Author(s)

Publication Date

Electrodynamic Interference and Induced Polarization in Nanoparticle-Based Optical Matter Arrays

The Journal of Physical Chemistry C

Curtis Peterson

John Parker

Emmanuel Valenton

Yuval Yifat

Shiqi Chen

...

2024/4/26

Advanced multi-dimensional SIM: aberration-free, high-speed 3D, multi-color, and deep learning based virtual multi-channel Imaging.

Daozheng Gong

Chufan Cai

Ashesh Ashesh

Geneva Schlafly

Patrick J La Rivière

...

2024/3/13

Aberration-free, multi-plane, multi-color, and deep learning-empowered virtual multi-channel structured illumination microscopy

Biophysical Journal

Daozheng Gong

Chufan Cai

Ashesh Ashesh

Florian Jug

Norbert F Scherer

2024/2/8

Easily scalable multi-color DMD-based structured illumination microscopy

Optics Letters

Daozheng Gong

Chufan Cai

Eli Strahilevitz

Jing Chen

Norbert F Scherer

2024/1/1

Generation of Robust Entanglement in Plasmonically Coupled Quantum Dots Driven by Quantum Squeezed Light

arXiv preprint arXiv:2312.00608

Sina Soleimanikahnoj

Stephen K Gray

Norbert F Scherer

2023/12/1

Tandem aberration correction optics (TACO) in wide-field structured illumination microscopy

Biomedical Optics Express

Daozheng Gong

Norbert F Scherer

2023/12/1

Optical trapping with magnetic fields of light

Yanzeng Li

Rosalind Huang

Jumanah AlMalki

Marcos Perez

Uttam Manna

...

2023/10/5

Understanding and design of non-conservative optical matter systems using Markov state models

Molecular Systems Design & Engineering

Shiqi Chen

John A Parker

Curtis W Peterson

Stuart A Rice

Norbert F Scherer

...

2022

Volumetric microscopy of CD9 and CD63 reveals distinct subpopulations and novel structures of extracellular vesicles in situ in triple negative breast cancer cells

bioRxiv

Elizabeth D White

Nykia D Walker

Hannah Yi

Aaron R Dinner

Norbert F Scherer

...

2022/11/8

Systems and methods for interferometric multifocus microscopy

2022/5/24

Facile measurement of the rotation of a single optically trapped nanoparticle using the diagonal ratio of a quadrant photodiode

ACS Photonics

Yuval Yifat

John Parker

Tian-Song Deng

Stephen K Gray

Stuart A Rice

...

2021/11/2

Self-Organizing Optical Matter Machines and Many-Body Forces

Norbert F Scherer

2021/8/6

Data-driven reaction coordinate discovery in overdamped and non-conservative systems: application to optical matter structural isomerization

Nature Communications

Shiqi Chen

Curtis W Peterson

John A Parker

Stuart A Rice

Andrew L Ferguson

...

2021/5/5

Mechanical feedback promotes bacterial adaptation to antibiotics

Nature Physics

Shiladitya Banerjee

Klevin Lo

Nikola Ojkic

Roisin Stephens

Norbert F Scherer

...

2021/3

Designing “Metamolecules” for Photonic Function: Reduced Backscattering

physica status solidi (b)

Tian-Song Deng

John Parker

Yutaro Hirai

Nolan Shepherd

Hiroshi Yabu

...

2020/12

Excitation of non-radiating anapoles in dielectric nanospheres

Bulletin of the American Physical Society

Uttam Manna

John Parker

Hiroshi Sugimoto

Brighton Coe

Daniel Eggena

...

2020/3/3

Optical matter machines: angular momentum conversion by collective modes in optically bound nanoparticle arrays

Optica

John Parker

Curtis W Peterson

Yuval Yifat

Stuart A Rice

Zijie Yan

...

2020/10/20

Negative torque and many-body non-conservative dynamics in optical matter systems

Norbert F Scherer

2020/8/22

Excitation of optical anapoles in dielectric nanospheres

Uttam Manna

John A Parker

Hiroshi Sugimoto

Brighton Coe

Daneil Eggena

...

2020/8/20

Snapshot multifocal light field microscopy

Optics express

Kuan He

Xiaolei Wang

Zihao W Wang

Hannah Yi

Norbert F Scherer

...

2020/4/13

See List of Professors in Norbert F. Scherer University(University of Chicago)

Co-Authors

H-index: 114
Shaul Mukamel

Shaul Mukamel

University of California, Irvine

H-index: 111
Margaret Murnane

Margaret Murnane

University of Colorado Boulder

H-index: 89
Guyot-Sionnest Philippe

Guyot-Sionnest Philippe

University of Chicago

H-index: 82
Haeshin Lee

Haeshin Lee

KAIST

H-index: 79
Louis Philipson

Louis Philipson

University of Chicago

H-index: 66
Minhaeng Cho

Minhaeng Cho

Korea University

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