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In mathematics, anticommutativity is a specific property of some non-commutative mathematical operations. Swapping the position of two arguments of an antisymmetric operation yields a result which is the inverse of the result with unswapped arguments. The notion inverse refers to a group structure on the operation's codomain, possibly with another operation. Subtraction is an anticommutative operation because commuting the operands of a − b gives b − a = −(a − b); for example, 2 − 10 = −(10 − 2) = −8. Another prominent example of an anticommutative operation is the Lie bracket.
In mathematical physics, where symmetry is of central importance, or even just in multilinear algebra these operations are mostly (multilinear with respect to some vector structures and then) called antisymmetric operations, and when they are not already of arity greater than two, extended in an associative setting to cover more than two arguments.
Definition
If are two abelian groups, a bilinear map
is anticommutative if for all
we have
More generally, a multilinear map is anticommutative if for all
we have
where is the sign of the permutation
.
Properties
If the abelian group has no 2-torsion, implying that if
then
, then any anticommutative bilinear map
satisfies
More generally, by transposing two elements, any anticommutative multilinear map satisfies
if any of the are equal; such a map is said to be alternating. Conversely, using multilinearity, any alternating map is anticommutative. In the binary case this works as follows: if
is alternating then by bilinearity we have
and the proof in the multilinear case is the same but in only two of the inputs.
Examples
Examples of anticommutative binary operations include:
- Cross product
- Lie bracket of a Lie algebra
- Lie bracket of a Lie ring
- Subtraction
See also
- Commutativity
- Commutator
- Exterior algebra
- Graded-commutative ring
- Operation (mathematics)
- Symmetry in mathematics
- Particle statistics (for anticommutativity in physics).
References
- Bourbaki, Nicolas (1989), "Chapter III. Tensor algebras, exterior algebras, symmetric algebras", Algebra. Chapters 1–3, Elements of Mathematics (2nd printing ed.), Berlin-Heidelberg-New York City: Springer-Verlag, ISBN 3-540-64243-9, MR 0979982, Zbl 0904.00001.
External links
![image](https://www.english.nina.az/wikipedia/image/aHR0cHM6Ly93d3cuZW5nbGlzaC5uaW5hLmF6L3dpa2lwZWRpYS9pbWFnZS9hSFIwY0hNNkx5OTFjR3h2WVdRdWQybHJhVzFsWkdsaExtOXlaeTkzYVd0cGNHVmthV0V2WTI5dGJXOXVjeTkwYUhWdFlpODVMems1TDFkcGEzUnBiMjVoY25rdGJHOW5ieTFsYmkxMk1pNXpkbWN2TkRCd2VDMVhhV3QwYVc5dVlYSjVMV3h2WjI4dFpXNHRkakl1YzNabkxuQnVadz09LnBuZw==.png)
- Gainov, A.T. (2001) [1994], "Anti-commutative algebra", Encyclopedia of Mathematics, EMS Press. Which references the Original Russian work
- Weisstein, Eric W. "Anticommutative". MathWorld.
In mathematics anticommutativity is a specific property of some non commutative mathematical operations Swapping the position of two arguments of an antisymmetric operation yields a result which is the inverse of the result with unswapped arguments The notion inverse refers to a group structure on the operation s codomain possibly with another operation Subtraction is an anticommutative operation because commuting the operands of a b gives b a a b for example 2 10 10 2 8 Another prominent example of an anticommutative operation is the Lie bracket In mathematical physics where symmetry is of central importance or even just in multilinear algebra these operations are mostly multilinear with respect to some vector structures and then called antisymmetric operations and when they are not already of arity greater than two extended in an associative setting to cover more than two arguments DefinitionIf A B displaystyle A B are two abelian groups a bilinear map f A2 B displaystyle f colon A 2 to B is anticommutative if for all x y A displaystyle x y in A we have f x y f y x displaystyle f x y f y x More generally a multilinear map g An B displaystyle g A n to B is anticommutative if for all x1 xn A displaystyle x 1 dots x n in A we have g x1 x2 xn sgn s g xs 1 xs 2 xs n displaystyle g x 1 x 2 dots x n text sgn sigma g x sigma 1 x sigma 2 dots x sigma n where sgn s displaystyle text sgn sigma is the sign of the permutation s displaystyle sigma PropertiesIf the abelian group B displaystyle B has no 2 torsion implying that if x x displaystyle x x then x 0 displaystyle x 0 then any anticommutative bilinear map f A2 B displaystyle f colon A 2 to B satisfies f x x 0 displaystyle f x x 0 More generally by transposing two elements any anticommutative multilinear map g An B displaystyle g colon A n to B satisfies g x1 x2 xn 0 displaystyle g x 1 x 2 dots x n 0 if any of the xi displaystyle x i are equal such a map is said to be alternating Conversely using multilinearity any alternating map is anticommutative In the binary case this works as follows if f A2 B displaystyle f colon A 2 to B is alternating then by bilinearity we have f x y x y f x x f x y f y x f y y f x y f y x 0 displaystyle f x y x y f x x f x y f y x f y y f x y f y x 0 and the proof in the multilinear case is the same but in only two of the inputs ExamplesExamples of anticommutative binary operations include Cross product Lie bracket of a Lie algebra Lie bracket of a Lie ring SubtractionSee alsoCommutativity Commutator Exterior algebra Graded commutative ring Operation mathematics Symmetry in mathematics Particle statistics for anticommutativity in physics ReferencesBourbaki Nicolas 1989 Chapter III Tensor algebras exterior algebras symmetric algebras Algebra Chapters 1 3 Elements of Mathematics 2nd printing ed Berlin Heidelberg New York City Springer Verlag ISBN 3 540 64243 9 MR 0979982 Zbl 0904 00001 External linksLook up anticommutative property in Wiktionary the free dictionary Gainov A T 2001 1994 Anti commutative algebra Encyclopedia of Mathematics EMS Press Which references the Original Russian work Weisstein Eric W Anticommutative MathWorld