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- Path: sparky!uunet!olivea!charnel!rat!ucselx!crash!cmkrnl!jeh
- From: jeh@cmkrnl.com
- Newsgroups: sci.electronics
- Subject: Re: Lasers (was: laser gunsights)
- Message-ID: <1993Jan10.003302.1113@cmkrnl.com>
- Date: 10 Jan 93 08:33:02 GMT
- References: <1993Jan9.122133.46254@kuhub.cc.ukans.edu> <1993Jan9.135624.9035@doug.cae.wisc.edu>
- Organization: Kernel Mode Consulting, San Diego, CA
- Lines: 31
-
- In article <1993Jan9.135624.9035@doug.cae.wisc.edu>, kolstad@cae.wisc.edu
- (Joel Kolstad) writes:
- > In article <1993Jan9.122133.46254@kuhub.cc.ukans.edu> wellison@kuhub.cc.ukans.edu writes:
- >
- >>As with ANY laser light source, the power
- >>is concentrated into a very tigh beam.
- >
- > No, only a laser with some optics attached will have the power concentrated
- > into a very tight beam. Lasers with no optics whatsoever have a very
- > diverging beam.
-
- I'm not sure what you mean by "lasers with no optics". If it doesn't have
- mirrors, e.g. a diode laser, you're right.
-
- If you mean a conventional laser with flat mirrors but no exterior lenses,
- typical beam divergence is down in the one or two milliradian range even for
- small, inexpensive HeNe "experimentor's" lasers, such as you find in the Edmund
- Scientific catalog. If you want to consider this "very diverging", fine, but
- it isn't a use of the term that many other people will understand.
-
- If by "no optics whatsoever" you mean not even mirrors, then in my book you
- aren't talking about a laser. (Experimental units have been built that rely
- on single-pass gain, but mostly just to prove that it could be done.)
-
- (The Edmund Scientific catalog is not a particularly good place to shop for
- lasers, but it is something that you are likely able to find even if you
- don't know much about lasers... which certainly seems to be the case.)
-
- --- Jamie Hanrahan, Kernel Mode Consulting, San Diego CA
- Internet: jeh@cmkrnl.com, hanrahan@eisner.decus.org, or jeh@crash.cts.com
- Uucp: ...{crash,eisner,uunet}!cmkrnl!jeh
-