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-rw-r--r--Docs/source/acknowledge_us.rst12
-rw-r--r--Docs/source/highlights.rst10
-rw-r--r--Docs/source/index.rst3
-rw-r--r--README.md5
4 files changed, 25 insertions, 5 deletions
diff --git a/Docs/source/acknowledge_us.rst b/Docs/source/acknowledge_us.rst
index 3101d8163..49df08eb7 100644
--- a/Docs/source/acknowledge_us.rst
+++ b/Docs/source/acknowledge_us.rst
@@ -41,9 +41,10 @@ Latest WarpX reference
If your project leads to a scientific publication, please consider citing the paper below.
-- Myers A, Almgren A, Amorim LD, Bell J, Fedeli L, Ge L, Gott K, Grote DP, Hogan M, Huebl A, Jambunathan R, Lehe R, Ng C, Rowan M, Shapoval O, Thevenet M, Vay JL, Vincenti H, Yang E, Zaim N, Zhang W, Zhao Y, Zoni E.
- **Porting WarpX to GPU-accelerated platforms**. *Parallel Computing*. 2021 Sep, 108:102833.
- https://doi.org/10.1016/j.parco.2021.102833
+- Fedeli L, Huebl A, Boillod-Cerneux F, Clark T, Gott K, Hillairet C, Jaure S, Leblanc A, Lehe R, Myers A, Piechurski C, Sato M, Zaim N, Zhang W, Vay J-L, Vincenti H.
+ **Pushing the Frontier in the Design of Laser-Based Electron Accelerators with Groundbreaking Mesh-Refined Particle-In-Cell Simulations on Exascale-Class Supercomputers**.
+ *SC22: International Conference for High Performance Computing, Networking, Storage and Analysis (SC)*. ISSN:2167-4337, pp. 25-36, Dallas, TX, US, 2022.
+ https://www.computer.org/csdl/proceedings-article/sc/2022/544400a025/1I0bSKaoECc
.. _acknowledge_warpx_all_refs:
@@ -66,6 +67,11 @@ If your project uses the specific algorithms, please consider citing the respect
**A hybrid nodal-staggered pseudo-spectral electromagnetic particle-in-cell method with finite-order centering**. *Computer Physics Communications* **279**, 2022.
`DOI:10.1016/j.cpc.2022.108457 <https://doi.org/10.1016/j.cpc.2022.108457>`__
+- Myers A, Almgren A, Amorim LD, Bell J, Fedeli L, Ge L, Gott K, Grote DP, Hogan M, Huebl A, Jambunathan R, Lehe R, Ng C, Rowan M, Shapoval O, Thevenet M, Vay JL, Vincenti H, Yang E, Zaim N, Zhang W, Zhao Y, Zoni E.
+ **Porting WarpX to GPU-accelerated platforms**.
+ *Parallel Computing*. 2021 Sep, 108:102833.
+ `DOI:10.1016/j.parco.2021.102833 <https://doi.org/10.1016/j.parco.2021.102833>`__
+
- Shapoval O, Lehe R, Thevenet M, Zoni E, Zhao Y, Vay JL.
**Overcoming timestep limitations in boosted-frame Particle-In-Cell simulations of plasma-based acceleration**.
*Phys. Rev. E* Nov 2021, 104:055311.
diff --git a/Docs/source/highlights.rst b/Docs/source/highlights.rst
index 49a7b1122..c18b91cf1 100644
--- a/Docs/source/highlights.rst
+++ b/Docs/source/highlights.rst
@@ -14,6 +14,11 @@ Plasma-Based Acceleration
Scientific works in laser-plasma and beam-plasma acceleration.
+#. Fedeli L, Huebl A, Boillod-Cerneux F, Clark T, Gott K, Hillairet C, Jaure S, Leblanc A, Lehe R, Myers A, Piechurski C, Sato M, Zaim N, Zhang W, Vay J-L, Vincenti H.
+ **Pushing the Frontier in the Design of Laser-Based Electron Accelerators with Groundbreaking Mesh-Refined Particle-In-Cell Simulations on Exascale-Class Supercomputers**.
+ *SC22: International Conference for High Performance Computing, Networking, Storage and Analysis (SC)*. ISSN:2167-4337, pp. 25-36, Dallas, TX, US, 2022.
+ https://www.computer.org/csdl/proceedings-article/sc/2022/544400a025/1I0bSKaoECc
+
#. Wang J, Zeng M, Li D, Wang X, Lu W, Gao J.
**Injection induced by coaxial laser interference in laser wakefield accelerators**.
Matter and Radiation at Extremes 7, 054001, 2022.
@@ -35,6 +40,11 @@ Laser-Plasma Interaction
Scientific works in laser-ion acceleration and laser-matter interaction.
+#. Fedeli L, Huebl A, Boillod-Cerneux F, Clark T, Gott K, Hillairet C, Jaure S, Leblanc A, Lehe R, Myers A, Piechurski C, Sato M, Zaim N, Zhang W, Vay J-L, Vincenti H.
+ **Pushing the Frontier in the Design of Laser-Based Electron Accelerators with Groundbreaking Mesh-Refined Particle-In-Cell Simulations on Exascale-Class Supercomputers**.
+ *SC22: International Conference for High Performance Computing, Networking, Storage and Analysis (SC)*. ISSN:2167-4337, pp. 25-36, Dallas, TX, US, 2022.
+ https://www.computer.org/csdl/proceedings-article/sc/2022/544400a025/1I0bSKaoECc
+
#. Hakimi S, Obst-Huebl L, Huebl A, Nakamura K, Bulanov SS, Steinke S, Leemans WP, Kober Z, Ostermayr TM, Schenkel T, Gonsalves AJ, Vay J-L, Tilborg Jv, Toth C, Schroeder CB, Esarey E, Geddes CGR.
**Laser-solid interaction studies enabled by the new capabilities of the iP2 BELLA PW beamline**.
Physics of Plasmas **29**, 083102, 2022.
diff --git a/Docs/source/index.rst b/Docs/source/index.rst
index 80c307b14..d34bd6788 100644
--- a/Docs/source/index.rst
+++ b/Docs/source/index.rst
@@ -3,7 +3,7 @@
WarpX
-----
-WarpX is an advanced **electromagnetic Particle-In-Cell** code.
+WarpX is an advanced, time-based, **electromagnetic & electrostatic Particle-In-Cell** code.
It supports many features including:
@@ -14,6 +14,7 @@ It supports many features including:
For details on the algorithms that WarpX implements, see the :ref:`theory section <theory>`.
WarpX is a *highly-parallel and highly-optimized code*, which can run on GPUs and multi-core CPUs, and includes load balancing capabilities.
+WarpX scales to the world's largest supercomputers and was awarded the `2022 ACM Gordon Bell Prize <https://www.exascaleproject.org/ecp-supported-collaborative-teams-win-the-2022-acm-gordon-bell-prize-and-special-prize/>`__.
In addition, WarpX is also a *multi-platform code* and runs on Linux, macOS and Windows.
.. _contact:
diff --git a/README.md b/README.md
index ef9729102..235e619c6 100644
--- a/README.md
+++ b/README.md
@@ -17,9 +17,12 @@
## Overview
-WarpX is an advanced electromagnetic Particle-In-Cell code.
+WarpX is an advanced **electromagnetic & electrostatic Particle-In-Cell** code.
It supports many features including Perfectly-Matched Layers (PML), mesh refinement, and the boosted-frame technique.
+WarpX is a *highly-parallel and highly-optimized code*, which can run on GPUs and multi-core CPUs, and includes load balancing capabilities.
+WarpX scales to the world's largest supercomputers and was awarded the [2022 ACM Gordon Bell Prize](https://www.exascaleproject.org/ecp-supported-collaborative-teams-win-the-2022-acm-gordon-bell-prize-and-special-prize/).
+
## Documentation
[![PICMI](https://img.shields.io/static/v1?label="works%20with"&message="PICMI"&color="blueviolet")](https://picmi-standard.github.io)