★ wanayoo — archive 1999 http://howstuffworks.com/question40.htmNouvelle recherche | Portail wanayoo

How Stuff Works



Question of the Day

Q&A Archive

HSW keeps a complete archive of previously answered questions to help you find answers quickly. Please Click Here for a complete list of previously answered questions.

Asking Questions

If you would like to ask a question, you can click here.
Each weekday Marshall Brain answers questions submitted by the readers of How Stuff Works in the Question of the Day section of HSW. You can also view previously answered questions in the HSW Question Archive. Here is today's question!

Question

What is an atomic clock and how do they work?

Answer

If you have read the HSW article on the Global Positioning System (GPS) you know that atomic clocks are extremely important to the system. You also frequently hear about atomic clocks in ads for the new clocks that automatically synchronize themselves with the atomic clock in Boulder, Colorado. Atomic clocks are also important to a variety of scientific endeavors.

So let's start with the general notion of a clock. A clock's job is to keep track of the passage of time. All clocks do this by counting the "ticks" of a "resonator". So in a pendulum clock the resonator is a pendulum and the gears in the clock keep track of time by counting the resonations (the swingings back and forth) of the pendulum. The pendulum usually "resonates" at a frequency of one swing per second. A digital clock uses either the oscillations on the power line (60 cycles per second in the U.S., 50 cycles per second in Europe) or the oscillations of a quartz crystal as the resonator and counts using digital counters. The accuracy of the clock is controlled by how accurately the resonator is able to resonate at the specified frequency.

An atomic clock is a clock that uses the resonance frequencies of atoms as its resonator. According to Encyclopedia Britannica, the resonator is "regulated by the frequency of the microwave electromagnetic radiation emitted or absorbed by the quantum transition (energy change) of an atom or molecule." (See this page for a diagram and description of the process). The advantage of this approach is that atoms resonate at extremely consistent frequencies. If you take any atom of cesium and ask it to resonate, it will resonate at exactly the same frequency as any other atom of cesium. Cesium-133 oscillates at 9,192,631,770 cycles per second. This sort of accuracy is completely different from the accuracy of a quartz clock. In a quartz clock the quartz crystal is manufactured so that its oscillating frequency is close to some standard frequency. But manufacturing tolerances will cause every crystal to be slightly different, and things like temperature will change the frequency. A cesium atom always resonates at the same known frequency - that is what makes atomic clocks so precise.

Interesting links:


How Stuff Works Power Panel
Table of Contents
A complete list of all HSW articles

About Marshall Brain
Information about the creator of HSW

Search
Search for any word or concept in HSW

Citing HSW
Information about citing HSW in articles and papers

Question of the Day
Ask questions or browse hundreds in the archive

Books
A variety of books for people interested in how stuff works

HSW Newsletter
Sign up to receive the monthly HSW newsletter

Contacting HSW
Contact HSW directly with email

What's New
Review newsletters to chart HSW's development

Awards
Check out HSW's awards and reviews!

Disclaimer
The disclaimer required by the lawyer

Author Information
Learn how you can write for HSW

HSW Fan Buttons
Link to HSW with these snazzy fan buttons!
Suggestions
Leave a suggestion in the suggestion box


BYG Publishing How Stuff Works (http://www.howstuffworks.com) is a production of
BYG Publishing, Inc.
http://www.bygpub.com - questions@bygpub.com
P.O. Box 40492 - Raleigh, NC 27629

© 1998 BYG Publishing, Inc. All rights reserved.





Click Here!