Ferenc Krausz

Garching, Germany

Ferenc Krausz

wikipediaNobel Prize

This inventor holds 30 USPTO granted patents and 4 published patent applications and 19 EPO patents, primarily in Laser Technology. Top assignees: Max-Planck-Gesellschaft Zur Förderung Der Wissenschaften E. V. , Ludwig-Maximilians-Universitaet Muenchen, Femtolasers Produktions Gmbh. Active years: 2003-2026. Nobel Prize laureate.

USPTO Granted Patents = 30 

% Patents Active = 66.7

 

Average Co-Inventor Count = 3.0

ph-index = 5

Forward Citations = 73(Granted Patents)


Location History:

  • Korneuburg, AT (2003 - 2006)
  • Vösendorf, AT (2004 - 2007)
  • Vosendorf, AT (2007)
  • Garching bei München, DE (2011)
  • Garching, DE (2009 - 2024)

Company Filing History:


Years Active: 2003-2026

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Areas of Expertise:
Quantum-Cascade Laser
Pulsed Laser Light
Spectral Response
Frequency Comb
Interferometry
Vibrational Spectroscopy
Kerr Lens Mode Locking
Optical Devices
Intrapulse Difference Frequency
Amplifier Devices
Chirped Multilayer Mirrors
Coherent Radiation
30 patents (USPTO):Explore Patents

Title: Ferenc Krausz: A Pioneer in Laser Technology and Particle Analysis

Introduction:

Ferenc Krausz, an esteemed inventor and physicist based in Garching, Germany, has made significant contributions to the fields of laser technology and particle analysis. With an impressive portfolio of 25 patents, Krausz's innovative work has revolutionized the way we generate laser pulses and conduct spectrometry-based particle analysis.

Latest Patents:

One of Krausz's latest patents is a groundbreaking device and method for generating laser pulses using Kerr lens-based mode locking. This invention involves a laser device equipped with a solid-state gain medium, a Kerr medium device, and a loss-modulation device. By harnessing the nonlinear Kerr effect and modulating power loss, this technology enables the creation of precise laser pulses in a resonator beam path.

In addition, Krausz has also developed a particle analysis method and apparatus that utilizes spectrometry-based analysis of fluid samples. This invention involves the creation of sample and probe light beams with varying relative phases, allowing for the detection and spectral response of particles within the sample. The use of broad-spectrum light sources covering the mid-infrared frequency range enhances the accuracy and efficiency of this particle analysis technique.

Career Highlights:

Throughout his career, Ferenc Krausz has been associated with prominent institutions at the forefront of scientific research. He has worked extensively with the Max-Planck-Gesellschaft zur Förderung der Wissenschaften e.V, a renowned German research foundation. Additionally, Krausz has made significant contributions as a researcher at Ludwig-Maximilians-Universität München, one of Germany's leading academic institutions.

Collaborations:

Krausz's groundbreaking work has attracted collaborations with other influential scientists. Notably, he has worked alongside Ioachim Pupeza, a scientist known for his expertise in ultrafast lasers and frequency combs. Together, they have furthered the development and application of advanced laser technologies.

Moreover, Krausz has collaborated with Alexander Apolonskiy, a prominent physicist specializing in ultrafast optics. Their joint efforts have contributed to significant advancements in the field of femtosecond laser technology.

Conclusion:

Ferenc Krausz's extensive patent portfolio and collaborations underscore his status as a leading innovator in laser technology and particle analysis. His inventions, such as the Kerr lens-based mode locking device and the spectrometry-based particle analysis method, have paved the way for cutting-edge research in these fields. Krausz's continued dedication to pushing the boundaries of innovation promises a future enriched with even more groundbreaking inventions and patents.

Profile summary based on public USPTO records.
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