On an approach to the construction of the Friedrichs and Neumann-Krein extensions of nonnegative linear relations

Authors

  • O.G. Storozh Ivan Franko Lviv National University, 1 Universytetska str., 79000, Lviv, Ukraine
https://doi.org/10.15330/cmp.10.2.387-394

Keywords:

Hilbert space, relation, operator, extension, boundary value space
Published online: 2018-12-31

Abstract

Let L0 be a closed linear nonnegative (probably, positively defined) relation ("multivalued operator") in a complex Hilbert space H. In terms of the so called boundary value spaces (boundary triples) and corresponding Weyl functions and Kochubei-Strauss characteristic ones, the Friedrichs (hard) and Neumann-Krein (soft) extensions of L0 are constructed.

It should be noted that every nonnegative linear relation L0 in a Hilbert space H has two extremal nonnegative selfadjoint extensions: the Friedrichs extension LF and the Neumann-Krein extension LK, satisfying the following property: (ε>0)(LF+ε1)1(L~+ε1)1(LK+ε1)1 in the set of all nonnegative selfadjoint subspace extensions L~ of L0.

The boundary triple approach to the extension theory was initiated by F.S. Rofe-Beketov, M.L. and V.I. Gorbachuk, A.N. Kochubei, V.A. Mikhailets, V.O. Dercach, M.N. Malamud, Yu. M. Arlinskii and other mathematicians.

In addition, it is showed that the construction of the mentioned extensions may be realized in a more simple way under the assumption that initial relation is a positively defined one.

How to Cite
(1)
Storozh, O. On an Approach to the Construction of the Friedrichs and Neumann-Krein Extensions of Nonnegative Linear Relations. Carpathian Math. Publ. 2018, 10, 387-394.