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Outlook Web App | webmail.phys.ksu.edu Reviews

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Security ‎( show explanation. This is a public or shared computer. Select this option if you use Outlook Web App on a public computer. Be sure to sign out when you've finished and close all windows to end your session. This is a private computer. Select this option if you're the only person who uses this computer. Your server will allow a longer period of inactivity before signing you out. Warning: By selecting this option, you confirm that this computer complies with your organization's security policy.

LINKS TO THIS WEBSITE

jrm.phys.ksu.edu jrm.phys.ksu.edu

Job Opportunities at JRM

https://jrm.phys.ksu.edu/jobs.html

James R. Macdonald Laboratory. This is the JRM Lab web site. If you can read this, your browser is unable to properly import or use. Cascading Style Sheets (CSS). Please upgrade to a more modern browser. There are openings at JRM in our experimental group. Postdoctoral Research Associate Positions. Ultrafast Atomic, Molecular and Optical Physics. Possible research projects and responsibilities include:. Candidates must have earned a Ph.D. (or equivalent) in physics, physical chemistry or a relate...Candi...

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JRM Photo Galleries

https://jrm.phys.ksu.edu/gallery.html

James R. Macdonald Laboratory. This is the JRM Lab web site. If you can read this, your browser is unable to properly import or use. Cascading Style Sheets (CSS). Please upgrade to a more modern browser. Our photographic documentation of life in the JRM Lab. You may also want to visit the Physics Video Gallery. Each image below links to a different set of "thumbnail" photos. Metrology Labs - Part 2. Laser and Quantum Optics Class. Laser Lab Open House. Last updated on Tuesday, 05-May-2015.

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High Intensity Tunable Source (HITS)

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James R. Macdonald Laboratory. This is the JRM Lab web site. If you can read this, your browser is unable to properly import or use. Cascading Style Sheets (CSS). Please upgrade to a more modern browser. The High Intensity Tunable Source (HITS). HITS, the High Intensity Tunable Source, along with PULSAR, are true state of the art ultrafast lasers. The HITS laser system provides tunable, multi-octave, broadband, waveform-sculpted pulses. HITS is mainly funded by the National Science Foundation.

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Kansas Light Source (KLS)

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James R. Macdonald Laboratory. This is the JRM Lab web site. If you can read this, your browser is unable to properly import or use. Cascading Style Sheets (CSS). Please upgrade to a more modern browser. The Kansas Light Source (KLS) provides high-intensity ultrafast laser light. See more photos of KLS in our Photo Gallery. The construction of the system was partially financed by Kansas State University. By the National Science Foundation. Under a Major Research Instrumentation. Repetition rate: 2 kHz.

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What's New?

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James R. Macdonald Laboratory. This is the JRM Lab web site. If you can read this, your browser is unable to properly import or use. Cascading Style Sheets (CSS). Please upgrade to a more modern browser. New content and hot topics in the JRM Lab. Local Research in the News. With the help of EPSCoR. A summer REU student worked with with Artem Rudenko. New hollow-core fiber gas lasers. Have been invented by Brian Washburn. Our National Science Foundation-supported Research Experience for Undergraduates.

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Graduate Research Assistant Stipend and Benefits

https://jrm.phys.ksu.edu/grad-stipend.html

James R. Macdonald Laboratory. This is the JRM Lab web site. If you can read this, your browser is unable to properly import or use. Cascading Style Sheets (CSS). Please upgrade to a more modern browser. Graduate research assistant (GRA) stipends and benefits. Our graduate stipends are competitive with those of other physics institutions. The cost of living. In Manhattan is relatively low while the quality of life. This package is subject to change at the discretion of the Director of the AMOP program.

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James R. Macdonald Lab: Atomic, Molecular and Optical Physics

https://jrm.phys.ksu.edu/index.html

James R. Macdonald Laboratory. Think of it as a microscopic movie: A sequence of X-ray images shows the explosion of superheated nanoparticles. The picture series reveals how the atoms in these particles move, how they form plasma and how the particles change shape. The method of taking these pictures is a collaborative creation that involved Kansas State University researchers Artem Rudenko. Both assistant professors of physics. At Stanford University, Argonne National Laboratory. Ultrafast x-ray-induce...

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JRM Publications

https://jrm.phys.ksu.edu/publications.html

James R. Macdonald Laboratory. This is the JRM Lab web site. If you can read this, your browser is unable to properly import or use. Cascading Style Sheets (CSS). Please upgrade to a more modern browser. Journal articles, abstracts, dissertations and more from the JRM Lab. Please note that access to journals may be limited to subscribers. Our 10 most recent journal articles. And all calendar 2016. Papers, to date. Past home page feature research stories. JRM contributions to 2012 AMO conferences.

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MOT: Magneto-Optical Trap

https://jrm.phys.ksu.edu/mot.html

James R. Macdonald Laboratory. This is the JRM Lab web site. If you can read this, your browser is unable to properly import or use. Cascading Style Sheets (CSS). Please upgrade to a more modern browser. Our magneto-optical trap allows the study of ultracold atoms. See more photos of the MOT in our Photo Gallery. The cold, trapped atoms can be probed with either laser light or slow ion beams. These techniques are known as MOTRIMS, or magneto-optical trap recoil-ion momentum spectroscopy. Phys Rev. A.

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Theoretical Research Groups

https://jrm.phys.ksu.edu/theory.html

James R. Macdonald Laboratory. This is the JRM Lab web site. If you can read this, your browser is unable to properly import or use. Cascading Style Sheets (CSS). Please upgrade to a more modern browser. Our theoretical research groups and links to some of their recent research results. Group studies ultracold three-body collisions and intense laser-matter interactions. Role of Nuclear Rotation in H2 Dissociation by Ultrashort Laser Pulses. PhD dissertation of Fatima Anis. Phys Rev. Lett. Quantum Dynamic...

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