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TURBOMOLE: Modular program suite for ab initio quantum-chemical and condensed-matter simulations.


ABSTRACT: TURBOMOLE is a collaborative, multi-national software development project aiming to provide highly efficient and stable computational tools for quantum chemical simulations of molecules, clusters, periodic systems, and solutions. The TURBOMOLE software suite is optimized for widely available, inexpensive, and resource-efficient hardware such as multi-core workstations and small computer clusters. TURBOMOLE specializes in electronic structure methods with outstanding accuracy-cost ratio, such as density functional theory including local hybrids and the random phase approximation (RPA), GW-Bethe-Salpeter methods, second-order Møller-Plesset theory, and explicitly correlated coupled-cluster methods. TURBOMOLE is based on Gaussian basis sets and has been pivotal for the development of many fast and low-scaling algorithms in the past three decades, such as integral-direct methods, fast multipole methods, the resolution-of-the-identity approximation, imaginary frequency integration, Laplace transform, and pair natural orbital methods. This review focuses on recent additions to TURBOMOLE's functionality, including excited-state methods, RPA and Green's function methods, relativistic approaches, high-order molecular properties, solvation effects, and periodic systems. A variety of illustrative applications along with accuracy and timing data are discussed. Moreover, available interfaces to users as well as other software are summarized. TURBOMOLE's current licensing, distribution, and support model are discussed, and an overview of TURBOMOLE's development workflow is provided. Challenges such as communication and outreach, software infrastructure, and funding are highlighted.

SUBMITTER: Balasubramani SG 

PROVIDER: S-EPMC7228783 | biostudies-literature | 2020 May

REPOSITORIES: biostudies-literature

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TURBOMOLE: Modular program suite for ab initio quantum-chemical and condensed-matter simulations.

Balasubramani Sree Ganesh SG   Chen Guo P GP   Coriani Sonia S   Diedenhofen Michael M   Frank Marius S MS   Franzke Yannick J YJ   Furche Filipp F   Grotjahn Robin R   Harding Michael E ME   Hättig Christof C   Hellweg Arnim A   Helmich-Paris Benjamin B   Holzer Christof C   Huniar Uwe U   Kaupp Martin M   Marefat Khah Alireza A   Karbalaei Khani Sarah S   Müller Thomas T   Mack Fabian F   Nguyen Brian D BD   Parker Shane M SM   Perlt Eva E   Rappoport Dmitrij D   Reiter Kevin K   Roy Saswata S   Rückert Matthias M   Schmitz Gunnar G   Sierka Marek M   Tapavicza Enrico E   Tew David P DP   van Wüllen Christoph C   Voora Vamsee K VK   Weigend Florian F   Wodyński Artur A   Yu Jason M JM  

The Journal of chemical physics 20200501 18


TURBOMOLE is a collaborative, multi-national software development project aiming to provide highly efficient and stable computational tools for quantum chemical simulations of molecules, clusters, periodic systems, and solutions. The TURBOMOLE software suite is optimized for widely available, inexpensive, and resource-efficient hardware such as multi-core workstations and small computer clusters. TURBOMOLE specializes in electronic structure methods with outstanding accuracy-cost ratio, such as  ...[more]

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