Information Systems B.Sc. · Physics Student at UFRJ · Founder of Asimovtech Systems
I am an independent developer with a Bachelor’s degree in Information Systems from Universidade Estácio de Sá and currently study Physics at the Federal University of Rio de Janeiro — UFRJ.
I build software through strongly AI-assisted development workflows, focusing on:
- problem definition and system decomposition;
- architecture and technical prototyping;
- AI-agent orchestration;
- API and service integration;
- testing, iteration and documentation;
- turning broad ideas into demonstrable MVPs.
My work spans developer tools, business automation, local-first systems, scientific simulations and exploratory computational research.
My goal is not to write every line manually. It is to understand the problem, direct the construction process and deliver something testable.
|
|
|
|
Problem
↓
System decomposition
↓
AI agents and specialized tools
↓
Integration and execution
↓
Testing and correction
↓
Documentation and demonstrable MVP
My workflow is based on orchestration rather than manual code volume.
I use AI agents to accelerate implementation while remaining responsible for defining requirements, selecting architectures, integrating components, testing behavior and documenting the resulting system.
| Project | Area | Description |
|---|---|---|
| GNU TimeWeaver | Developer Tools | Local-first time-travel debugger for agent memory, using persistent DAG checkpoints, mapped pages and Copy-on-Write snapshots. |
| DriveTube | SaaS | Multi-tenant video distribution platform with Google Drive storage, controlled access and monetization workflows. |
| LaTeXGeneratorAI | Research Tools | AI-assisted system for generating compilable LaTeX figures, rendering them and analyzing visual outputs. |
| EntropicGravity-Py | Scientific Computing | Python framework for N-body simulations and computational experiments involving emergent-gravity models. |
| PlanckDynamics | Computational Physics | Experimental cosmology framework containing simulations, parameter studies and model-comparison workflows. |
| HoryzonEvents | Complex Systems | Computational sociology experiments using the Ising model, Monte Carlo methods and social phase transitions. |
The Tamesis Research Program is my independent archive of exploratory work involving mathematical physics, information theory, cosmology, topology and computational modeling.
It contains:
- theoretical manuscripts;
- numerical experiments;
- simulation engines;
- visualizations;
- research notes;
- falsifiable-model proposals;
- historical iterations of the framework.
The repository is maintained as an open computational research archive, not as a claim of established scientific consensus.
Selected research repositories
| Repository | Focus |
|---|---|
| Tamesis Research Archive | Main archive of theoretical documents, simulations and exploratory models. |
| Holographic Origin of Matter and Dynamics | Geometric and information-theoretic models applied to particle properties. |
| Holographic Scaling | Computational investigations involving topology, scaling and spectral structures. |
| ReactiveCosmoMapper | Multi-scale cosmological simulation and model-comparison experiments. |
| The Dark Matter Testbench | Experimental pipeline for analyzing cosmological datasets and gravitational models. |
| BounceGravitacional | Numerical cosmology prototype involving black-hole-universe and inflation models. |
| BiofisicInformation | Exploratory simulations at the intersection of information theory and computational biology. |
| Holographic Epigenetic Memory | Gene-regulatory-network and epigenetic-memory simulation experiments. |
-
Physics — Federal University of Rio de Janeiro, UFRJ Undergraduate studies in progress.
-
Bachelor of Information Systems — Universidade Estácio de Sá, UNESA
Independent technology initiative focused on:
- software prototypes;
- automation systems;
- AI-assisted development;
- internal business tools;
- technical experimentation;
- scientific and mathematical software.
I am available for freelance and collaborative work involving:
- business process automation;
- internal tools and dashboards;
- AI-agent workflows;
- API and system integrations;
- MVP development;
- technical prototypes;
- scientific software;
- documentation and project structuring.
Research note: Projects associated with Tamesis include exploratory hypotheses, simulations and model-internal results. Unless explicitly supported by independent publication or external replication, they should not be interpreted as established scientific conclusions.




