ABC conjecture: Difference between revisions

From Polymath Wiki
Jump to navigationJump to search
Line 43: Line 43:


===Blogs===
===Blogs===
*[http://quomodocumque.wordpress.com/2012/09/03/mochizuki-on-abc/ Mochizuki on ABC], Quomodocumque, Jordan Ellenberg, 3 Sept 2012
*[http://sbseminar.wordpress.com/2012/06/12/abc-conjecture-rumor-2/ ABC conjecture rumor], Secret Blogging Seminar, 12 June, 2012
*[http://richardelwes.co.uk/2012/09/04/as-easy-as-123/ As easy as 123…], Simple City, Richard Elwes' Blog, 4 Sept 2012
*[http://quomodocumque.wordpress.com/2012/09/03/mochizuki-on-abc/ Mochizuki on ABC], Quomodocumque, Jordan Ellenberg, 3 Sept, 2012
*[http://sbseminar.wordpress.com/2012/06/12/abc-conjecture-rumor-2/ ABC conjecture rumor], Secret Blogging Seminar, June 12, 2012
*[http://richardelwes.co.uk/2012/09/04/as-easy-as-123/ As easy as 123…], Simple City, Richard Elwes' Blog, 4 Sept, 2012
*[https://plus.google.com/103703080789076472131/posts/j1sEGnPyiRu Timothy Gowers Google+], 4 Sept 2012
*[https://plus.google.com/103703080789076472131/posts/j1sEGnPyiRu Timothy Gowers Google+], 4 Sept, 2012
*[https://plus.google.com/117663015413546257905/posts/Npu7xDniXMS John Baez Google+], 4 Sept 2012, see also a [https://plus.google.com/117663015413546257905/posts/2vTzJJSueRb repost]
*[https://plus.google.com/117663015413546257905/posts/Npu7xDniXMS John Baez Google+], 4 Sept 2012, see also a [https://plus.google.com/117663015413546257905/posts/2vTzJJSueRb repost]
**[https://plus.google.com/117663015413546257905/posts/hzqBCeujWEg John Baez Google+], 5 Sept 2012
**[https://plus.google.com/117663015413546257905/posts/hzqBCeujWEg John Baez Google+], 5 Sept, 2012
**[https://plus.google.com/117663015413546257905/posts/d1RsN4KnCUs John Baez Google+], 12 Sept 2012, by Minhyong Kim.
**[https://plus.google.com/117663015413546257905/posts/d1RsN4KnCUs John Baez Google+], 12 Sept, 2012, by Minhyong Kim.
*[https://plus.google.com/114134834346472219368/posts/c7LkaWV69KL Terence Tao Google+], 4 Sept 2012
*[https://plus.google.com/114134834346472219368/posts/c7LkaWV69KL Terence Tao Google+], 4 Sept, 2012
*[http://www.math.columbia.edu/~woit/wordpress/?p=5104 Proof of the abc Conjecture?], Not Even Wrong, 4 Sept 2012
*[http://www.math.columbia.edu/~woit/wordpress/?p=5104 Proof of the abc Conjecture?], Not Even Wrong, 4 Sept, 2012
*[http://bit-player.org/2012/the-abc-game The abc game], bit-player, 7 Sept 2012
*[http://gaussianos.com/posible-demostracion-de-la-veracidad-de-la-conjetura-abc/ Posible demostración de la veracidad de la conjetura ABC], Gaussianos, 5 Sept, 2012.
*[http://golem.ph.utexas.edu/category/2012/09/the_axgrothendieck_theorem_acc.html The Ax-Grothendieck Theorem According to Category Theory], The n-Category Café, September 10, 2012
*[http://bit-player.org/2012/the-abc-game The abc game], bit-player, 7 Sept, 2012
*[http://www.oblomovka.com/wp/2012/09/11/touch-of-the-galois/ touch of the galois], Oblomovka, 11 Sept 2012
*[http://oumathclub.wordpress.com/2012/09/09/the-abc-conjecture/ The abc Conjecture], U. Oklahoma math club, 9 Sept, 2012
*[http://rjlipton.wordpress.com/2012/09/12/the-abc-conjecture-and-cryptography/ The ABC Conjecture And Cryptography], Gödel’s Lost Letter and P=NP, September 12, 2012
*[http://golem.ph.utexas.edu/category/2012/09/the_axgrothendieck_theorem_acc.html The Ax-Grothendieck Theorem According to Category Theory], The n-Category Café, 10 Sept, 2012
*[http://www.oblomovka.com/wp/2012/09/11/touch-of-the-galois/ touch of the galois], Oblomovka, 11 Sept, 2012
*[http://rjlipton.wordpress.com/2012/09/12/the-abc-conjecture-and-cryptography/ The ABC Conjecture And Cryptography], Gödel’s Lost Letter and P=NP, 12 Sept, 2012
*[http://leisureguy.wordpress.com/2012/09/16/abc-proof-opens-new-vistas-in-math/ “ABC” proof opens new vistas in math], Later On, 16 Sept, 2012


===Q & A===
===Q & A===

Revision as of 08:39, 16 September 2012

The abc conjecture asserts, roughly speaking, that if a+b=c and a,b,c are coprime, then a,b,c cannot all be too smooth; in particular, the product of all the primes dividing a, b, or c has to exceed [math]\displaystyle{ c^{1-\varepsilon} }[/math] for any fixed [math]\displaystyle{ \varepsilon \gt 0 }[/math] (if a,b,c are smooth).

This shows for instance that [math]\displaystyle{ (1-\varepsilon) \log N / 3 }[/math]-smooth a,b,c of size N which are coprime cannot sum to form a+b=c. This unfortunately seems to be too weak to be of much use for the finding primes project.

Mochizuki's proof

Papers

Mochizuki's claimed proof of the abc conjecture is conducted primarily through the following series of four papers:

  1. (IUTT-I) Inter-universal Teichmuller Theory I: Construction of Hodge Theaters, Shinichi Mochizuki
  2. (IUTT-II) Inter-universal Teichmuller Theory II: Hodge-Arakelov-theoretic Evaluation, Shinichi Mochizuki
  3. (IUTT-III) Inter-universal Teichmuller Theory III: Canonical Splittings of the Log-theta-lattice, Shinichi Mochizuki
  4. (IUTT-IV) Inter-universal Teichmuller Theory IV: Log-volume Computations and Set-theoretic Foundations, Shinichi Mochizuki, 30 August 2012

See also these earlier slides of Mochizuki on inter-universal Teichmuller theory. The answers to this MathOverflow post (and in particular Minhyong Kim's answer) describe the philosophy behind Mochizuki's proof strategy.

The argument also relies heavily on Mochizuki's previous work on the Hodge-Arakelov theory of elliptic curves, including the following references:

Anyone seeking to get a thorough "bottom-up" understanding of Mochizuki's argument will probably be best advised to start with these latter papers first.

In order to apply the theory developed in (IUTT I-IV) to obtain quantitative Diophantine results such as the abc conjecture, the results from the paper

are used. (Note that the published version of this paper requires some small corrections, listed here.)

Here are the remainder of Shinichi Mochizuki's papers, and here is the Wikipedia page for Shinichi Mochizuki.

Specific topics

The last part of (IUTT-IV) explores the use of different models of ZFC set theory in order to more fully develop inter-universal Teichmuller theory (this part is not needed for the applications to the abc conjecture). There appears to be an inaccuracy in a remark in Section 3, page 43 of that paper regarding the conservative nature of the extension of ZFC by the addition of the Grothendieck universe axiom; see this blog comment. However, this remark was purely for motivational purposes and does not impact the proof of the abc conjecture.

There is some discussion at this MathOverflow post as to whether the explicit bounds for the abc conjecture are too strong to be consistent with known or conjectured lower bounds on abc.

The question of whether the results in this paper can be made completely effective (which would be of importance for several applications) is discussed in some of the comments to this blog post.

Blogs

Q & A

Discussions

News Media