Philip Anderson on string in the NYT

  • Thread starter marcus
  • Start date
  • Tags
    String
In summary: The above quotes from Gates, Lee, and Glashow represent the majority of the physicists in the article. They all feel that string theory is a potentially fruitful area of research, but that it is not yet possible to test the theory experimentally. They caution that if the theory fails to provide a testable prediction, it should be dismissed as a theory of physics.
  • #1
marcus
Science Advisor
Gold Member
Dearly Missed
24,775
792
today Tuesday 4 January NYT
--quote--

Philip W. Anderson
Physicist and Nobel laureate, Princeton

Is string theory a futile exercise as physics, as I believe it to be? It is an interesting mathematical specialty and has produced and will produce mathematics useful in other contexts, but it seems no more vital as mathematics than other areas of very abstract or specialized math, and doesn't on that basis justify the incredible amount of effort expended on it.

My belief is based on the fact that string theory is the first science in hundreds of years to be pursued in pre-Baconian fashion, without any adequate experimental guidance. It proposes that Nature is the way we would like it to be rather than the way we see it to be; and it is improbable that Nature thinks the same way we do.

The sad thing is that, as several young would-be theorists have explained to me, it is so highly developed that it is a full-time job just to keep up with it. That means that other avenues are not being explored by the bright, imaginative young people, and that alternative career paths are blocked.
--end quote--

maybe the top level scientific establishment is finally wising up

http://www.nytimes.com/2005/01/04/science/04edgehed.html?pagewanted=3&oref=login

today's Science Section of the Times has selections from the responses to the Edge.org Question for 2005----brief quotes from over a dozen prominent scientists about "what do you believe but can't prove" where you get the man or woman's high priority message. Instead of being asked about a specific topic they each got to speak out with whatever message they urgently wanted to get across---usually it was something having to do with their own field (as in the case of Anderson the direction theoretical physics has been going) but it could be anything: philosophy, god, the future of the human species, morality, whatever.

the NYT informed selection from an Edge pot pourri
I think it is a good idea for an article

read it now for free----soon it goes into the NYT archives and becomes payfor

Or check out the original Edge article---with more statements from a wider variety of thinkers
http://www.edge.org/
 
Last edited:
Physics news on Phys.org
  • #2
There've been many prominent physicists expressing skepticism about string theory. Lawrence Krauss does so in a Scientific American interview:

http://sciam.com/article.cfm?chanID=sa007&articleID=0009973A-D518-10FA-89FB83414B7F0000

Also, in the transcript from the PBS Nova documentary of The Elegant Universe, the following comments appear:

S. JAMES GATES, JR. (University of Maryland): If string theory fails to provide a testable prediction, then nobody should believe it.

SHELDON LEE GLASHOW (Boston University): Is that a theory of physics, or a philosophy?

(I recall Glashow saying more than is contained in the above quote, something about the inability to test string theory experimentally.)

http://www.pbs.org/wgbh/nova/transcripts/3014_elegant.html
 
  • #3
Given my choice, I'd rather have somebody doing experimental tests of Pioneer effects than coming up with advanced versions of string/brane theory. But, you also need to generate hypothesises. The particle accellerator office pool, as the quantum mechanics field can get sometimes, is also a bit out of hand. See what shows up before making a new theory. But, ultimately the number of physicists is driven by the number of physics students and those physicists have a great deal of slack resources in deciding what to research. Theoretical physics has the virtue of costing little in terms of resources and using people already on the payroll to do it.
 

1. What is the significance of Philip Anderson's work on string theory?

Philip Anderson's work on string theory has been groundbreaking in the field of theoretical physics. He has made significant contributions to our understanding of the fundamental nature of the universe and has advanced our knowledge of particle physics.

2. How did Philip Anderson's work on string theory impact the scientific community?

Philip Anderson's work on string theory has had a profound impact on the scientific community. His research has led to new discoveries and has influenced the work of other scientists in the field. He has also inspired a new generation of physicists to continue exploring the mysteries of the universe.

3. What are some key concepts in Philip Anderson's work on string theory?

Some key concepts in Philip Anderson's work on string theory include the idea that the universe is made up of tiny, vibrating strings, and that these strings can explain the behavior of particles and forces in the universe. He also proposed the concept of supersymmetry, which suggests that every particle has a partner particle with different spin.

4. What challenges did Philip Anderson face in his research on string theory?

Philip Anderson faced many challenges in his research on string theory, including developing mathematical models to explain the behavior of strings, and making predictions that could be tested experimentally. He also faced criticism and skepticism from some members of the scientific community who were skeptical of the string theory hypothesis.

5. How has Philip Anderson's work on string theory advanced our understanding of the universe?

Philip Anderson's work on string theory has greatly advanced our understanding of the universe. His research has helped to bridge the gap between quantum mechanics and general relativity, and has provided new insights into the fundamental nature of matter and energy. It has also opened up new avenues for scientific exploration and discovery.

Similar threads

  • Beyond the Standard Models
Replies
2
Views
3K
  • Beyond the Standard Models
Replies
2
Views
2K
  • Beyond the Standard Models
Replies
20
Views
7K
  • Science and Math Textbooks
Replies
2
Views
3K
  • MATLAB, Maple, Mathematica, LaTeX
Replies
7
Views
2K
  • MATLAB, Maple, Mathematica, LaTeX
Replies
7
Views
3K
  • MATLAB, Maple, Mathematica, LaTeX
Replies
1
Views
2K
  • MATLAB, Maple, Mathematica, LaTeX
Replies
1
Views
2K
  • MATLAB, Maple, Mathematica, LaTeX
Replies
1
Views
2K
Back
Top