Aetheris Bio was founded with an unyielding conviction: biology is not irreducibly chaotic; it is governed by thermodynamic geometry. By uniting continuous $SE(3)$ diffusion with petascale accelerated computing, we make molecular medicine deterministic.
Tanaji Vishnu Yadav is the Founder, CEO, and Chief Scientist of Aetheris Bio Systems Inc. With over a decade of deep technical experience in high-performance distributed systems and computational physics, he architected the foundational $SE(3)$ diffusion mathematics that power the Aetheris Core engine.
His research focuses on eliminating the latency bottlenecks of classical Newtonian mechanics by formulating all-atom molecular dynamics as continuous Riemannian manifold transitions. Author of 7+ peer-reviewed publications across top machine learning and biophysics venues with over 1,800 academic citations, and named inventor on 2 core provisional patents in generative macrocyclic design.
As a technical sole founder, Mr. Yadav drives laser-focused engineering execution, directly supervising the development of warp-level FP8 reduction kernels and automated laboratory validation pipelines.
World-class multidisciplinary expertise across computational biology, supercomputing, and clinical medicine.
Head of Structural Biology
Former Cryo-EM Research Group Leader at Max Planck Institute of Biochemistry. Over 12 years analyzing membrane receptor complexes.
VP of Distributed Compute
Former High-Performance Systems Fellow at CERN & EPFL. Specializes in warp-level cooperative reduction algorithms and petascale scheduling.
Chief Medical Officer
Former Translational Oncology Fellow at Dana-Farber Cancer Institute & Harvard Medical School. Leads pre-clinical IND-enabling studies.
We never compromise on first-principles atomic constraints. Every generated conformation must obey strict thermodynamic laws.
We measure iteration cycles in minutes, not months. We author low-level execution kernels to squeeze maximum FLOPs from modern hardware.
Computation without wet-lab verification is hallucination. Every in silico candidate is synthesized and validated in microfluidics.
We prioritize previously undruggable high-mortality oncology and neurodegenerative targets where traditional approaches have failed.
Headquartered in the San Francisco Bay Area with distributed computational nodes worldwide.
450 Mission Street, 14th Floor
San Francisco, CA 94105, USA
Technoparkstrasse 1
8005 Zürich, Switzerland
Outer Ring Road, Bellandur
Bangalore, KA 560103, India