Result for 1ABF37C4EBBB670645BC289492F333489B703B2F

Query result

Key Value
FileName./usr/share/doc/python-chemps2/changelog.Debian.gz
FileSize1172
MD5F7C7DB591623CE568AFFD8FA3C0FADE2
SHA-11ABF37C4EBBB670645BC289492F333489B703B2F
SHA-2569281ACC0FF567408723FD5607AFAA9B9BE535FFB8C2FC9BE3B89B6E6D998DD34
SSDEEP24:XK1iFVMIIc5HfxEEp0glD5RfDlZP71GnhQlvtR9IB:XLsKfHp0Cb37QnhQlvRY
TLSHT18E210A02F21908C5DB3DD234B935D7AED4670B1F71F6A6865D72080388145283B7459C
hashlookup:parent-total41
hashlookup:trust100

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Parents (Total: 41)

The searched file hash is included in 41 parent files which include package known and seen by metalookup. A sample is included below:

Key Value
FileSize6600980
MD5C3D0E9314E038DBA430C370EFAC23EE3
PackageDescriptionC++ headers, static library, and symlink for libchemps2-2 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
PackageVersion1.8.3-2
SHA-109EDF890ACD44514197C8FDDDE0DE80B507638BE
SHA-256339E030C75CB7D3310753E4260B917EEA93F531B1C8DB09F83C220D0363C6326
Key Value
FileSize79982
MD5A35F71B0826FD1D7AA9E9CF31F91AAF2
PackageDescriptionPython 2 interface for libchemps2-2 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 2.
PackageMaintainerDebichem Team <debichem-devel@lists.alioth.debian.org>
PackageNamepython-chemps2
PackageSectionpython
PackageVersion1.8.3-2
SHA-10CBB99BACAA11F2BF0C45978ACDCACA2C0AEBDAB
SHA-2569EB9D8BCEC8C9CB8907FA9CA2DA46924F16C63CA3532CAABC6DA0631B1738394
Key Value
FileSize27124
MD5D183F743984C21D8E283803915C2AA17
PackageDescriptionExecutable to call libchemps2-2 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
PackageVersion1.8.3-2
SHA-11146D133468C4846A613E0062476063F66145ECF
SHA-2568B94C28216FB3217160960A45036A51C5271B5AAC2C770BC12BD009203FE8E6F
Key Value
FileSize410150
MD5EE8965CCED5018EDDE8E12FB742CDF0D
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>
PackageNamelibchemps2-2
PackageSectionlibs
PackageVersion1.8.3-2
SHA-11A21EC9ECE8E7DBD7984CD40E9ECD611676C9983
SHA-256D1E79FCD6E7E66214413370DE31765BFBB3A0DAE8F9746B32DE333E39EF26798
Key Value
FileSize66224
MD5FFBB391394803EAE536CDAE1631CD322
PackageDescriptionPython 2 interface for libchemps2-2 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 2.
PackageMaintainerDebichem Team <debichem-devel@lists.alioth.debian.org>
PackageNamepython-chemps2
PackageSectionpython
PackageVersion1.8.3-2
SHA-1277370DABC8E25E9BA427187A177DBE886DF0AE7
SHA-256A8C5DEB86807CFC1E66D2133A16E3F0ADAC1F34DC3D0BF04965F2BD6C9170F63
Key Value
FileSize6595688
MD509B45299454ECA4B9F6CEAC4F960DE3E
PackageDescriptionC++ headers, static library, and symlink for libchemps2-2 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
PackageVersion1.8.3-2
SHA-13497035909F7EA38C6B448D698DA944207FDD708
SHA-256CDEFC0328999431ED9FB73E2859E2995BE3BA556BF7C0841A2ACD49349E0D152
Key Value
FileSize26452
MD58260B8FBE9A4B87590B84271BDF655CF
PackageDescriptionExecutable to call libchemps2-2 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
PackageVersion1.8.3-2
SHA-1369BB6C03429DE4BFAB2F0B4140A671D14ECD469
SHA-2566A28468520DA7E2063DEFA6E4F945BAD19E47F9CE21CC6CD3866912675590D8A
Key Value
FileSize6556692
MD5F0599EF022267CF0A5EE3D9346D94102
PackageDescriptionC++ headers, static library, and symlink for libchemps2-2 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
PackageVersion1.8.3-2
SHA-13B3162AA83EF2430A57436002037A8342B996041
SHA-25628F463D7C966331F9A8CA36A7D1EBC86FDAA3D9145FA3B8B68209152843307D4
Key Value
FileSize6536826
MD5A4B338BC5E61D3DBFDB78979AA2212DD
PackageDescriptionC++ headers, static library, and symlink for libchemps2-2 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
PackageVersion1.8.3-2
SHA-13F0FF6E54367C0E1186F42E238D7D235B2CE6E96
SHA-2569C463091107E33650C754C30D1BCB61FFAA837DA24AC29722D7B766DD13A4784
Key Value
FileSize26118
MD5605E02E264B0A55E125E62357A1E30AF
PackageDescriptionExecutable to call libchemps2-2 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
PackageVersion1.8.3-2
SHA-1566333919F2E6F5F365715990C55F6923D93BCD4
SHA-25698EFB485087AB445DAD3DBCF5D26532C0546579BA1A76875FBBBF7BE8721002A