Result for A9E5003F92AC66F84B863AD149FD00CD44230EB4

Query result

Key Value
FileName./usr/share/doc/python3-chemps2/changelog.Debian.arm64.gz
FileSize228
MD52F906921C0439ACC2E270B19F7CFE2CD
SHA-1A9E5003F92AC66F84B863AD149FD00CD44230EB4
SHA-25608435F8BC72F5F3C6A97615B94CA9B690FACB3BDAC406766F80574C6ED0E043B
SSDEEP6:XtchC2p/7XAqLCLMA1Gq7EhXfj4n4jZ/rDk/n:XehC87XtoMEGjZDDk/
TLSHT151D09734228C8018F35C3A3D3C6EAFC6972303CA40525789819EE4082E1CC00C2A5812
hashlookup:parent-total4
hashlookup:trust70

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Parents (Total: 4)

The searched file hash is included in 4 parent files which include package known and seen by metalookup. A sample is included below:

Key Value
FileSize26068
MD56B96985639604AEE7071F4ADDBD4B5A2
PackageDescriptionExecutable to call libchemps2-3 from the command line chemps2 is a scientific library which contains a spin-adapted implementation of the density matrix renormalization group (DMRG) for ab initio quantum chemistry. This wavefunction method allows one to obtain numerical accuracy in active spaces beyond the capabilities of full configuration interaction (FCI), and allows one to extract the 2-, 3-, and 4-particle reduced density matrices (2-, 3- and 4-RDM) of the active space. . For general active spaces up to 40 electrons in 40 orbitals can be handled with DMRG, and for one-dimensional active spaces up to 100 electrons in 100 orbitals. The 2-RDM of these active spaces can also be easily extracted, while the 3- and 4-RDM are limited to about 28 orbitals. . When the active space size becomes prohibitively expensive for FCI, DMRG can be used to replace the FCI solver in the complete active space self consistent field (CASSCF) method and the corresponding complete active space second order perturbation theory (CASPT2). The corresponding methods are called DMRG-SCF and DMRG-CASPT2, respectively. For DMRG-SCF the active space 2-RDM is required, and for DMRG-CASPT2 the active space 4-RDM. . This package installs the executable which parses Hamiltonians in fcidump format, performs DMRG-SCF and DMRG-CASPT2 calculations as specified by the user.
PackageMaintainerDebichem Team <debichem-devel@lists.alioth.debian.org>
PackageNamechemps2
PackageSectionscience
PackageVersion1.8.12-1+b1
SHA-14A527D3282036EDCC6E026EF5C2036C6A9005286
SHA-25686D7E880FAC1EC796A183D74DD1BE6799696A7871F930E60C56C2DADA4491C53
Key Value
FileSize65532
MD503B42B5E9E168D5102000A188611BA8A
PackageDescriptionC++ headers, static library, and symlink for libchemps2-3 chemps2 is a scientific library which contains a spin-adapted implementation of the density matrix renormalization group (DMRG) for ab initio quantum chemistry. This wavefunction method allows one to obtain numerical accuracy in active spaces beyond the capabilities of full configuration interaction (FCI), and allows one to extract the 2-, 3-, and 4-particle reduced density matrices (2-, 3- and 4-RDM) of the active space. . For general active spaces up to 40 electrons in 40 orbitals can be handled with DMRG, and for one-dimensional active spaces up to 100 electrons in 100 orbitals. The 2-RDM of these active spaces can also be easily extracted, while the 3- and 4-RDM are limited to about 28 orbitals. . When the active space size becomes prohibitively expensive for FCI, DMRG can be used to replace the FCI solver in the complete active space self consistent field (CASSCF) method and the corresponding complete active space second order perturbation theory (CASPT2). The corresponding methods are called DMRG-SCF and DMRG-CASPT2, respectively. For DMRG-SCF the active space 2-RDM is required, and for DMRG-CASPT2 the active space 4-RDM. . This package installs the C++ headers, static library, and symlink for libchemps2.
PackageMaintainerDebichem Team <debichem-devel@lists.alioth.debian.org>
PackageNamelibchemps2-dev
PackageSectionlibdevel
PackageVersion1.8.12-1+b1
SHA-1E199044A96941C23B94A905283BF5A7F59E8FD10
SHA-256D9645D1822287A1D077A8AC3F854082939BFE7ACF7ED698778F312BA1DF19204
Key Value
FileSize64252
MD5500E82E427CAA1CA214C2560795BF3F6
PackageDescriptionPython 3 interface for libchemps2-3 chemps2 is a scientific library which contains a spin-adapted implementation of the density matrix renormalization group (DMRG) for ab initio quantum chemistry. This wavefunction method allows one to obtain numerical accuracy in active spaces beyond the capabilities of full configuration interaction (FCI), and allows one to extract the 2-, 3-, and 4-particle reduced density matrices (2-, 3- and 4-RDM) of the active space. . For general active spaces up to 40 electrons in 40 orbitals can be handled with DMRG, and for one-dimensional active spaces up to 100 electrons in 100 orbitals. The 2-RDM of these active spaces can also be easily extracted, while the 3- and 4-RDM are limited to about 28 orbitals. . When the active space size becomes prohibitively expensive for FCI, DMRG can be used to replace the FCI solver in the complete active space self consistent field (CASSCF) method and the corresponding complete active space second order perturbation theory (CASPT2). The corresponding methods are called DMRG-SCF and DMRG-CASPT2, respectively. For DMRG-SCF the active space 2-RDM is required, and for DMRG-CASPT2 the active space 4-RDM. . This package installs the library for Python 3.
PackageMaintainerDebichem Team <debichem-devel@lists.alioth.debian.org>
PackageNamepython3-chemps2
PackageSectionpython
PackageVersion1.8.12-1+b1
SHA-163A6ACE9705AC509CD1F5316507EC90326F0E148
SHA-2561FE0BE40E5A3E0F2D210CBB0ACE5C0893EB748D049035E8A6B001C337D346F5E
Key Value
FileSize444280
MD5A4993FD72F7D4C871325B0DE48E53778
PackageDescriptionSpin-adapted DMRG for ab initio quantum chemistry chemps2 is a scientific library which contains a spin-adapted implementation of the density matrix renormalization group (DMRG) for ab initio quantum chemistry. This wavefunction method allows one to obtain numerical accuracy in active spaces beyond the capabilities of full configuration interaction (FCI), and allows one to extract the 2-, 3-, and 4-particle reduced density matrices (2-, 3- and 4-RDM) of the active space. . For general active spaces up to 40 electrons in 40 orbitals can be handled with DMRG, and for one-dimensional active spaces up to 100 electrons in 100 orbitals. The 2-RDM of these active spaces can also be easily extracted, while the 3- and 4-RDM are limited to about 28 orbitals. . When the active space size becomes prohibitively expensive for FCI, DMRG can be used to replace the FCI solver in the complete active space self consistent field (CASSCF) method and the corresponding complete active space second order perturbation theory (CASPT2). The corresponding methods are called DMRG-SCF and DMRG-CASPT2, respectively. For DMRG-SCF the active space 2-RDM is required, and for DMRG-CASPT2 the active space 4-RDM.
PackageMaintainerDebichem Team <debichem-devel@lists.alioth.debian.org>
PackageNamelibchemps2-3
PackageSectionlibs
PackageVersion1.8.12-1+b1
SHA-124A9E1E41A63AA46005597EA39A68E1930F5EAF3
SHA-256BB2453A093CA6C370076696B9DC4B0DA5D11471595CB6CB7B244C0CB90CB4972