38 citations
- Cornell UniversityUS6 papers
- Max Planck Institute for Gravitational PhysicsDE6 papers
- California Institute of TechnologyUS5 papers
- Chinese University of Hong KongHK5 papers
- Eötvös Loránd UniversityHU5 papers
- Goddard Space Flight CenterUS5 papers
- Leibniz University HannoverDE5 papers
- Montana State UniversityUS5 papers
- Rochester Institute of TechnologyUS5 papers
- Stony Brook UniversityUS5 papers
- The University of TokyoJP5 papers
- University of BirminghamGB5 papers
11 papers
ThRIve: Thermally Robust CNN Inference via Low-Rank Adaptation in Heterogeneous PIM Architectures
Vibhanshu Sharma, Pratyush Dhingra, Janardhan Rao Doppa +1
Processing-In-Memory (PIM) has emerged as a promising technology for accelerating machine learning (ML) workloads. Specifically, non-volatile memory-based PIM architectures have en…
Narrowband searches for continuous gravitational waves from known pulsars in the first two parts of the fourth LIGO--Virgo--KAGRA observing run
The LIGO Scientific Collaboration, the Virgo Collaboration, the KAGRA Collaboration +1853
Rotating non-axisymmetric neutron stars (NSs) are promising sources for continuous gravitational waves (CWs). Such CWs can, if detected, inform us about the internal structure and…
Menopause averted a midlife energetic crisis with help from older dependent children and parents: A simulation study
Edward H. Hagen
OBJECTIVES: The grandmother hypothesis proposes that ancestral women ceased reproduction midlife to instead provision their grandchildren. An alternative two-sex account proposes t…
Black Hole-Neutron Star Binaries near Neutron Star Disruption Limit in the Mass Regime of Event GW230529
Tia Martineau, Francois Foucart, Mark Scheel +3
In May 2023, the LIGO Livingston observatory detected the likely black hole-neutron star (BHNS) merger GW230529_181500. That event is expected to be the merger of a 2.5-4.5 $M_{\od…
GW230814: investigation of a loud gravitational-wave signal observed with a single detector
The LIGO Scientific Collaboration, The Virgo Collaboration, The Kagra Collaboration +1783
GW230814, detected by the LIGO Livingston observatory with a signal-to-noise ratio of 42.4, represents the loudest gravitational-wave signal in the GWTC-4.0 catalog. Its source is…
GWTC-4.0: Methods for Identifying and Characterizing Gravitational-wave Transients
The LIGO Scientific Collaboration, the Virgo Collaboration, the KAGRA Collaboration +1809
The Gravitational-Wave Transient Catalog (GWTC) is a collection of candidate gravitational-wave transient signals identified and characterized by the LIGO-Virgo-KAGRA Collaboration…