Constant of motion: Difference between revisions

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{{primary sources|date=August 2012}}
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The '''Heath-Brown–Moroz''' constant ''C'',<ref>{{cite journal|author=D. R. Heath-Brown | authorlink=Roger Heath-Brown | coauthors=B.Z. Moroz | title=The density of rational points on the cubic surface ''X''<sub>0</sub><sup>3</sup>=''X''<sub>1</sub>''X''<sub>2</sub>''X''<sub>3</sub> | journal=Mathematical Proceedings of the Cambridge Philosophical Society | volume=125 | pages=385–395 | year=1999|doi=10.1017/S0305004198003089 | issue=3}}</ref> named for [[Roger Heath-Brown]] and [[Boris Moroz]], is defined as
 
:<math>C=\prod_p\left(1-\frac{1}{p}\right)^7\left(1+\frac{7p+1}{p^2}\right) = 0.001317641... </math>
 
where ''p'' runs over the [[Prime number|primes]].
 
This constant is part of an [[asymptotic estimate]] for the distribution of [[rational point]]s of bounded [[height function|height]] on the [[cubic surface]] ''X''<sub>0</sub><sup>3</sup>=''X''<sub>1</sub>''X''<sub>2</sub>''X''<sub>3</sub>. Let ''H'' be a positive real number and ''N''(''H'') the number of solutions to the equation ''X''<sub>0</sub><sup>3</sup>=''X''<sub>1</sub>''X''<sub>2</sub>''X''<sub>3</sub> with all the ''X''<sub>''i''</sub> non-negative integers less than or equal to ''H'' and their [[greatest common divisor]] equal to 1. Then
 
:<math>N(H)= C \cdot \frac{H(\log H)^6} {4\times 6!} + O(H(\log H)^5).</math>
 
==References==
<references/>
 
{{DEFAULTSORT:Heath-Brown-Moroz constant}}
[[Category:Mathematical constants]]
 
 
{{numtheory-stub}}
{{num-stub}}

Latest revision as of 00:37, 6 January 2015

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