World's Best Scientists 2026 revealed!

Overview

What is he best known for?

The fields of study he is best known for:

  • Meteorology
  • Infrared
  • Optics

His main research concerns Stratosphere, Atmospheric sciences, Environmental science, Atmospheric sounding and Altitude. His work investigates the relationship between Stratosphere and topics such as Atmosphere that intersect with problems in Cirrus. His research integrates issues of Ozone and Atmospheric chemistry in his study of Atmospheric sciences.

Herbert Fischer integrates several fields in his works, including Environmental science, Meteorology, Ozone depletion and Latitude. His Meteorology course of study focuses on Remote sensing and Radiative transfer. His research investigates the link between Atmospheric sounding and topics such as Michelson interferometer that cross with problems in Infrared and Instrumentation.

His most cited work include:

  • Land surface temperature and emissivity estimation from passive sensor data: Theory and practice-current trends (379 citations)
  • Retrieval of temperature and tangent altitude pointing from limb emission spectra recorded from space by the Michelson Interferometer for Passive Atmospheric Sounding (MIPAS) (226 citations)
  • Remote sensing of vertical profiles of atmospheric trace constituents with MlPAS limb-emission spectrometers. (223 citations)

What are the main themes of his work throughout his whole career to date?

His scientific interests lie mostly in Environmental science, Atmospheric sounding, Atmospheric sciences, Stratosphere and Remote sensing. Herbert Fischer interconnects Instrumentation, Trace gas, Ozone layer and Michelson interferometer in the investigation of issues within Atmospheric sounding. His study in Atmospheric sciences is interdisciplinary in nature, drawing from both Ozone, Atmospheric chemistry and Latitude.

While the research belongs to areas of Stratosphere, Herbert Fischer spends his time largely on the problem of Mixing ratio, intersecting his research to questions surrounding Potential temperature. Herbert Fischer has included themes like Spectrometer, SCIAMACHY and Meteorology in his Remote sensing study. As part of one scientific family, Herbert Fischer deals mainly with the area of Meteorology, narrowing it down to issues related to the Emissivity, and often Brightness temperature.

He most often published in these fields:

  • Environmental science (53.72%)
  • Atmospheric sounding (52.89%)
  • Atmospheric sciences (47.93%)

What were the highlights of his more recent work (between 2008-2015)?

  • Stratosphere (47.93%)
  • Environmental science (53.72%)
  • Troposphere (23.14%)

In recent papers he was focusing on the following fields of study:

Herbert Fischer mostly deals with Stratosphere, Environmental science, Troposphere, Atmospheric sciences and Remote sensing. His Stratosphere research focuses on Ozone depletion in particular. His work in Environmental science incorporates the disciplines of Altitude and Climatology.

His Atmospheric sciences research includes themes of Ozone, Atmospheric chemistry and Latitude. His work in Remote sensing addresses issues such as Meteorology, which are connected to fields such as Radiative transfer. In his work, Infrared is strongly intertwined with Michelson interferometer, which is a subfield of Atmospheric sounding.

Between 2008 and 2015, his most popular works were:

  • Validation of ozone measurements from the Atmospheric Chemistry Experiment (ACE) (103 citations)
  • Gimballed Limb Observer for Radiance Imaging of the Atmosphere (GLORIA) scientific objectives (54 citations)
  • Instrument concept of the imaging Fourier transform spectrometer GLORIA (54 citations)

In his most recent research, the most cited papers focused on:

  • Meteorology
  • Infrared
  • Optics

Troposphere, Stratosphere, Altitude, Remote sensing and Radiance are his primary areas of study. Herbert Fischer's looking at Troposphere as part of his Atmospheric sciences and Climatology and Troposphere study. His study on Anticyclone is often connected to East Asian Monsoon and MOPITT as part of broader study in Atmospheric sciences.

Herbert Fischer brings together Climatology and Environmental science to produce work in his papers. His studies deal with areas such as Atmosphere, Meteorology and Radiative transfer as well as Remote sensing. Herbert Fischer has researched Panache in several fields, including Southern Hemisphere and Mixing ratio.

Best Publications

  • Land surface temperature and emissivity estimation from passive sensor data: Theory and practice-current trends

    P. Dash;F.-M. Göttsche;F.-S. Olesen;H. Fischer

  • MIPAS: an instrument for atmospheric and climate research

    H. Fischer;M. Birk;C. Blom;B. Carli

  • Remote sensing of vertical profiles of atmospheric trace constituents with MlPAS limb-emission spectrometers.

    H Fischer;H Oelhaf

  • Transport of Biomass Burning Smoke to the Upper Troposphere by Deep Convection in the Equatorial Region.

    M. O. Andreae;P. Artaxo;H. Fischer;S. R. Freitas

  • Civil Aircraft for the regular investigation of the atmosphere based on an instrumented container: The new CARIBIC system

    C. A. M. Brenninkmeijer;P. J. Crutzen;F. Boumard;T. Dauer

  • Retrieval of temperature and tangent altitude pointing from limb emission spectra recorded from space by the Michelson Interferometer for Passive Atmospheric Sounding (MIPAS)

    T. von Clarmann;N. Glatthor;U. Grabowski;M. Höpfner

  • Downward transport of upper atmospheric NOx into the polar stratosphere and lower mesosphere during the Antarctic 2003 and Arctic 2002/2003 winters

    B. Funke;M. López-Puertas;S. Gil-López;T. von Clarmann

  • The South Asian monsoon-pollution pump and purifier.

    Jos Lelieveld;Jos Lelieveld;Efstratios Bourtsoukidis;Christoph Brühl;Horst Fischer

  • Observation of NO(x) Enhancement and Ozone Depletion in the Northern and Southern hemispheres after the October-November 2003 Solar Proton Events

    M. López-Puertas;B. Funke;S. Gil-López;T. von Clarmann

  • Validation of ozone measurements from the Atmospheric Chemistry Experiment (ACE)

    E. Dupuy;K.A. Walker;K.A. Walker;J. Kar;C.D. Boone

  • Global chemical weather forecasts for field campaign planning: predictions and observations of large-scale features during MINOS, CONTRACE, and INDOEX

    M. G. Lawrence;P. J. Rasch;R. von Kuhlmann;J. Williams

  • Validation of water vapor results measured by the Limb Infrared Monitor of the Stratosphere Experiment on NIMBUS 7

    James M. Russell;John C. Gille;Ellis E. Remsberg;Larry L. Gordley

  • Design and characterization of the balloon-borne Michelson Interferometer for Passive Atmospheric Sounding (MIPAS-B2).

    Felix Friedl-Vallon;Guido Maucher;Meinhard Seefeldner;Olaf Trieschmann

  • Validation of nitrogen dioxide results measured by the Limb Infrared Monitor of the Stratosphere (LIMS) Experiment on NIMBUS 7

    James M. Russell;John C. Gille;Ellis E. Remsberg;Larry L. Gordley

  • Accuracy and precision of the nitric acid concentrations determined by the limb infrared monitor of the stratosphere experiment on NIMBUS 7

    John C. Gille;James M. Russell;Paul L. Bailey;Ellis E. Remsberg

  • TRISTAR - a tracer in-situ TDLAS for atmospheric research

    F. G. Wienhold;H. Fischer;P. Hoor;V. Wagner

  • Retrieval of stratospheric NOx from 5.3 and 6.2 μm nonlocal thermodynamic equilibrium emissions measured by Michelson Interferometer for Passive Atmospheric Sounding (MIPAS) on Envisat

    Bernd Funke;M. López-Puertas;T. von Clarmann;G. P. Stiller

  • Global distribution of mean age of stratospheric air from MIPAS SF 6 measurements

    G.P. Stiller;T. von Clarmann;M. Höpfner;N. Glatthor

  • MIPAS detects Antarctic stratospheric belt of NAT PSCs caused by mountain waves

    M. Höpfner;N. Larsen;R. Spang;B. P. Luo

  • Stratospheric ClONO2 and HNO3 profiles inside the Arctic vortex from MIPAS-B limb emission spectra obtained during EASOE

    H. Oelhaf;T.V. Clarmann;H. Fischer;F. Friedl-Vallon

  • Instrument concept of the imaging Fourier transform spectrometer GLORIA

    F. Friedl-Vallon;T. Gulde;F. Hase;A. Kleinert

  • Gimballed Limb Observer for Radiance Imaging of the Atmosphere (GLORIA) scientific objectives

    M. Riese;H. Oelhaf;P. Preusse;J. Blank

  • Evidence of scattering of tropospheric radiation by PSCs in mid-IR limb emission spectra: MIPAS-B observations and KOPRA simulations

    M. Höpfner;H. Oelhaf;G. Wetzel;F. Friedl-Vallon

  • Mixing Processes during the Antarctic Vortex Split in September–October 2002 as Inferred from Source Gas and Ozone Distributions from ENVISAT–MIPAS

    Norbert Glatthor;T. von Clarmann;H. Fischer;B. Funke

  • Global peroxyacetyl nitrate (PAN) retrieval in the upper troposphere from limb emission spectra of the Michelson Interferometer for Passive Atmospheric Sounding (MIPAS)

    N. Glatthor;T. von Clarmann;H. Fischer;B. Funke

  • Water vapor distributions measured with the Michelson Interferometer for Passive Atmospheric Sounding on board Envisat (MIPAS/Envisat)

    Mathias Milz;T. von Clarmann;H. Fischer;N. Glatthor

  • Remote sensing of vertical profiles of atmospheric trace constituents with MIPAS limb emission spectrometers

    Herbert Fischer;Hermann Oelhaf

Frequent Co-Authors

Michael Höpfner
Michael Höpfner Karlsruhe Institute of Technology
Gabriele Stiller
Gabriele Stiller Karlsruhe Institute of Technology
Bernd Funke
Bernd Funke Spanish National Research Council
Norbert Glatthor
Norbert Glatthor Karlsruhe Institute of Technology
T. von Clarmann
T. von Clarmann Karlsruhe Institute of Technology
Sylvia Kellmann
Sylvia Kellmann Karlsruhe Institute of Technology
Hermann Oelhaf
Hermann Oelhaf Karlsruhe Institute of Technology
Andrea Linden
Andrea Linden Karlsruhe Institute of Technology
Manuel López-Puertas
Manuel López-Puertas Spanish National Research Council
Thomas Blumenstock
Thomas Blumenstock Karlsruhe Institute of Technology

If you think any of the details on this page are incorrect, let us know.

Report an issue

We appreciate your kind effort to assist us to improve this page, it would be helpful providing us with as much detail as possible in the text box below:

Related Online Degrees & Career Pathways

Pursuing a degree in Environmental Sciences opens diverse career pathways that often intersect with fields like public administration, sociology, and education. For those interested in shaping policy or managing environmental programs, exploring top online MPA programs can provide valuable skills in public administration and leadership.

A strong understanding of social dynamics is essential in addressing environmental challenges. Students can complement their studies with an online degree such as the best online bachelor degree in sociology, broadening their perspective on community impact and social change.

For professionals aiming to advance within academia or specialized environmental education roles, Doctoral programs play a critical role. Those who prefer streamlined paths should consider education doctoral programs without dissertation requirement, offering flexibility without the traditional research burden.

Additionally, accredited options like accredited EdS to EdD programs provide pathways for educators seeking leadership roles while continuing to impact environmental learning and policy development.

Best Scientists Citing Herbert Fischer