Juliette Quinones

Computer Engineering

Architecting the future through quantum computing, astrophysics, and high-performance interactive software development. Building the next generation of scientific simulation systems.

Juliette Quinones Portrait
System Architecture

Professional Overview

I am a Computer Engineering student driven by a profound fascination with the universe's mechanics—from subatomic quantum states to orbital mechanics. My expertise lies in fusing rigorous engineering principles with cutting-edge software development to create interactive, simulation-driven platforms.

Currently engineering solutions in:

  • Quantum computing & algorithm design
  • Astrophysics & orbital simulations
  • High-performance web architecture
  • AI-driven analytical tools
  • Renewable energy prototypes
  • Real-time scientific rendering
  • Immersive UI/UX for complex systems
  • Hardware-software integration
Active Simulations

Deployed Projects & Research

Quantum Computer Prototype
Quantum Hardware Simulation

Quantum Computer Prototype Modeling

Developed a high-fidelity digital representation of a dilution refrigerator, focusing on the intricate mechanical assembly required for quantum hardware cooling.

  • Engineered complex structural layouts, including multi-stage thermal platforms, coaxial cabling, and custom electromagnetic shielding enclosures.
  • Optimized structural geometry and assembly constraints, ensuring physical accuracy in the representation of cryostat components and signal filtering modules.
  • Implemented advanced material and surface rendering pipelines, simulating professional-grade cryogenic metals and conductive components for high-impact technical visualization.
  • Analyzed cryogenic infrastructure requirements, bridging the gap between theoretical quantum architecture and practical physical engineering.
3D ModelingQuantum ArchitectureCryogenicsEngineering
Quantum Physics Lab
Quantum Physics Lab

Condensed Matter and Quantum Physics Lab

Developed a high-fidelity quantum gas simulator designed for real-time visualization, giving researchers an interactive tool to map complex density profiles, explore phase transitions, and analyze wavefunction topology instantly.

  • Engineered a responsive, research-grade quantum gas simulation suite using HTML5 Canvas (Vanilla JS) and Tailwind CSS, stabilizing frame rates at a consistent 60 FPS under heavy multi-module compute loads via a single requestAnimationFrame loop.
  • Overhauled a custom 3D mathematical projection matrix to eliminate geometric rendering artifacts, expanding visualization capacity to map macroscopic wavefunction topologies and density profiles in real-world spatial coordinates (x/y in 10⁻⁵ m, z in 10¹² m⁻³).
  • Implemented discrete kinetic state-tracking and multi-stop color interpolation algorithms to dynamically simulate critical quantum phase transitions, mapping live parameters directly onto an interactive phase boundary diagnostic chart.
  • Optimized event-handling and localized canvas redraws for complex quantum phenomena (including symmetric Abrikosov vortex lattices and lattice spin-swap animations) reducing interactive input latency to near-zero levels.
Canvas APIJavaScriptReal-time RenderingPhysics-based ModelingQuantum Mechanics SimulationHigh Performance Computing (HPC)
Quantum & Nano Engineering Interface
Quantum & Nano Engineering

Quantum & Nano Engineering Interface

Engineered a real-time visualization interface for advanced quantum and nano-scale phenomena, focusing on dynamic matrix rendering for Landau Levels and electron orbital degeneracies.

  • Architected optimized computational pipelines using WebGL and client-side rendering to process complex wave functions Ψ(x,y), locking a stable 60 FPS during multi-variable parameter manipulation.
  • Designed custom telemetry control layouts, integrating high-density interactive components for precise tracking of field coupling, potential barriers, and particle mass.
  • Implemented a premium, high-contrast design system utilizing an obsidian and liquid gold visual hierarchy, strict component alignment, and glassmorphic UI constraints.
  • Integrated an advanced educational UX layer, embedding explicit telemetry descriptions and mathematical typography to translate complex nanoscale physical systems into intuitive interactive software.
  • Optimized and deployed production-ready web infrastructure via automated pipelines, ensuring ultra-low latency execution and fluid cross-platform responsiveness.
Quantum Mechanics SimulationWebGLHigh Performance Computing (HPC)Physics-Based Animation
Precision Multimodal Thermal Controller
IoT/Cryo-Quantum Stability Hub

Precision Multimodal Thermal Controller

Architected a dual-mode embedded control hub for industrial automation protocols and sub-Kelvin cryogenic monitoring states.

  • Architected a dual-mode firmware architecture in MicroPython utilizing a hardware-driven SPDT slide switch to seamlessly toggle execution branches between classical industrial automation protocols and sub-Kelvin cryogenic monitoring states.
  • Engineered a high-precision analog telemetry pipeline leveraging 16-bit Analog-to-Digital Conversion (ADC) on a Raspberry Pi Pico W to map continuous physical sensor inputs into real-time operational metrics.
  • Implemented an exponential mathematical degradation model within the core loop to continuously calculate Qubit Fidelity based on multi-variable thermal noise and gate voltage calibration drift.
  • Developed hardcoded threshold boundaries to drive a bespoke 3-LED visual telemetry array (Soft Pink, Bright Magenta, Deep Purple), mapping exact phase states from optimal Coherence (>75% fidelity) to catastrophic Thermal Collapse (<35% fidelity).
  • Integrated an I2C-driven SSD1306 OLED display subsystem (128x64) to render live graphical progress bars and synchronized system telemetry data with a refresh latency of under 100ms.
  • Designed and simulated the entire low-power hardware schematic within the Wokwi virtual prototyping ecosystem, optimizing pinout mapping, ground isolation paths, and signal integrity for hardware-in-the-loop firmware validation.
Serial Protocols & Hardware Integration (I2C)Mixed-Signal TelemetryADC PipelinesFirmware EngineeringEmbedded SystemsThreshold LogicMicroPython
Space Simulation
Astrophysics Engine

Q-STELLAR

An interactive web-based planetary simulation platform engineered for high-fidelity space exploration, inspired by quantum computing paradigms.

  • Real-time rendering of planetary bodies and celestial mechanics.
  • Optimized using modern web APIs for flawless 60FPS navigation.
  • Translating complex astrophysical data into immersive user experiences.
JavaScriptCanvas APISimulation Architecture
Nanomaterials
Quantum Nanomaterials Simulator

QUAZENT

A sophisticated visualization interface for modeling quantum-scale phenomena in advanced nanomaterials.

  • Dynamic rendering of wave-function collapse and superposition states.
  • Algorithmic modeling of electron clouds and lattice thermodynamics.
  • Integrated WebLLM for localized, AI-powered quantum theory assistance.
WebLLMNanotechnologyReal-time Rendering
SSD Voltage Monitor Simulator
Power Management IC Simulation

SSD Voltage Monitor Simulator (PMIC)

Built a MicroPython validation simulator for PMIC voltage monitoring and real-time hardware-in-the-loop telemetry.

  • Architected a real-time validation script in MicroPython using Analog-to-Digital Conversion (ADC) to map continuous voltage fluctuations from 0.0V to 3.3V.
  • Designed and simulated a low-power hardware schematic in Wokwi, incorporating custom series-connected status LEDs and optimal current-limiting resistors (220 ohms).
  • Implemented hardcoded threshold boundaries to validate standard PMIC responses, handling under-voltage lockouts (UVLO at < 1.0V) and over-voltage protection (OVP at > 2.2V) to secure downstream data integrity.
  • Configured an interactive hardware-in-the-loop debugging workflow via serial monitor console outputs for accurate real-time telemetry tracking.
MicroPythonPrototypingPrinted Circuit Board (PCB) DesignAnalog-to-Digital Converters (ADC)HILPower ManagementPMIC
AI Quantum Networking
AI Quantum Computing Optimization

SKILLPRINT

A full-stack, AI-native platform designed for deep competency evaluation and intelligent node matching.

  • Architected data pipelines to process multi-modal portfolio evidence (text, images, code).
  • Engineered hybrid recommendation algorithms utilizing quantum-inspired optimization techniques.
  • Sleek, data-dense UI for real-time skill analytics and scoring workflows.
React.jsNode.jsMongoDBAI SystemsUX/UI
Asteroid
Orbital Mechanics

STONEPULSE

Award-winning asteroid-impact simulator built with Unity 3D, parsing live NASA telemetry for accurate trajectory forecasting.

  • Rigid-body physics engine implementation for collision dynamics.
  • Calculates impact joules, atmospheric entry vectors, and orbital perturbations.
  • Simulates theoretical mitigation vectors like gravitational tractors.
Unity 3DC#NASA DatasetsPhysics Engine
Hydro Turbine
Hydroelectric Engineering

Hydro-Turbine Generator

Physical prototype bridging mechanical forces with computational monitoring, focusing on renewable energy extraction.

  • Designed a fluid-dynamics optimized turbine converting hydraulic potential to electrical output.
  • Full pipeline validation: Reservoir -> Turbine -> DC Generator -> Measurement Interface.
Fluid DynamicsElectrical EngineeringHardware
Technical Matrix

Core Capabilities

Development Stack

PythonC++JavaScriptReact.jsNode.jsHTML/CSSWebGLCanvas APIUnity 3DC#MicroPython

Quantum & AI Subsystems

QiskitQ#Microsoft QDKWebLLMLLM IntegrationQuantum AlgorithmsVQE

Engineering Frameworks

Physics-based ModelingPhysics-Based AnimationSimulation ArchitectureReal-time RenderingFluid DynamicsCircuit DesignCAD/CAMData Structures3D Modeling

Embedded & Firmware Systems

Firmware EngineeringEmbedded SystemsSerial Protocols & Hardware Integration (I2C)Mixed-Signal TelemetryADC PipelinesAnalog-to-Digital Converters (ADC)Threshold LogicOLED Telemetry

Hardware Validation & Power

PrototypingPrinted Circuit Board (PCB) DesignHILPower ManagementPMICWokwi SimulationSignal IntegrityCryogenic Monitoring

Research Domains

NanotechnologyOrbital MechanicsAstrophysicsRenewable EnergySemiconductorsComputational HardwareCryogenicsQuantum Mechanics SimulationHigh Performance Computing (HPC)
Data Logs

Education & Credentials

Academic Base

2024 – 2028

Universidad Iberoamericana (UNIBE)

B.E. in Computer Engineering

Participant at UNIBE's 2025 Women in Tech innovation competition with my quantum matching system project SkillPrint. Represented engineering students as an invited guest to the Rector's and Academic Directorate's official roundtable discussions on innovation and student leadership. Selected participant in the UNIBEmprende 2025 business incubation program with my quantum simulation startup concept QUAZENT. Engaging in rigorous computer engineering coursework specializing in advanced math, experimental physics/chemistry, laboratory research, software/hardware-focused programming, and more. Developing technical expertise in software architecture, object-oriented programming, electronics, data structures, and algorithm design to support next-generation hardware systems. Coursework: Algorithms, Computational Architecture, Scientific Simulation Systems, Advanced Software Engineering, Physics/Chemistry labs, Calculus, Linear Algebra, Differential Equations & more.

Honors/Awards

Oct 2025

NASA Int. Space Apps Challenge

Galactic Problem Solver Award

As the Project Coordinator, led the STONEPULSE team to win the Galactic Problem Solver Award. Directed development of an asteroid simulation hub built in Unity 3D using C#, integrating real NASA datasets and physics-based motion systems to visualize orbital paths and collision probabilities.

May 2025

INDOTEL

National Finalist - R&D Lab Competition

Achieved Top 4 finalist position in the AI category among 50+ competing initiatives. As Project Captain, collaborated with a multidisciplinary team to develop an innovative AI-based project.

Jun 2023

Don Bosco Salesian Institute

2nd Place - Natural Sciences Olympiad (Chemistry)

Demonstrated advanced problem-solving skills in chemical analysis, stoichiometry, and molecular structure, qualifying for the regional level.

May 2023

Don Bosco Salesian Institute

3rd Place - Scientific, Technological & Cultural Fair

Earned recognition for outstanding research methodology, originality, and practical innovation by integrating scientific analysis with technological design.

Oct 2022

NASA Int. Space Apps Challenge

Galactic Problem Solver Award

Developed machine learning algorithms to preprocess and analyze InSAR satellite imagery, enabling accurate detection of environmental changes in the InSAR Change Detectives challenge.

Sep 2022

ADASEC, Citi Foundation, AIESEC

1st Place - IDEATON 2022 National Competition

Founded and led team SEAVERSE to win 1st place. Designed a biofertilizer prototype derived from sargassum, promoting eco-innovation and circular economy practices.

Aug 2022

Bright Leaders League (BLL)

Bright Leaders League Recognition

Selected from 800+ national applicants as one of 99 participants to collaborate with Ivy League students, engaging in intensive leadership, innovation, and personal development activities.

Certifications

Jun 2026

MathWorks

Machine Learning Onramp (MATLAB)

Programmed classification algorithms and automated data labeling pipelines within the MATLAB development environment.

Dec 2025

IBM

IBM Quantum - Quantum Machine Learning (ML)

Architected hybrid neural networks and quantum data embedding techniques.

Nov 2025

IBM

IBM Quantum - Quantum Algorithms

Deep dive into circuit synthesis and algorithmic modeling.

Oct 2025

Microsoft

Estimate Physical Resource Requirements for Quantum Algorithms (AQRE)

Estimated physical resource requirements for scaling quantum algorithms.

Oct 2025

Microsoft

Teleport Entangled Qubits with Q# - Azure Quantum Badge

Implemented and verified quantum teleportation protocols using Q#.

Oct 2025

Microsoft

Quantum Superposition with Q# - Azure Quantum Badge

Engineered fundamental quantum superposition states and operations.

Oct 2025

IBM

IBM Quantum - Quantum Chemistry with VQE

Simulated molecular ground states using the Variational Quantum Eigensolver.

Aug 2025

The Washington Institute for STEM, Entrepreneurship and Research

Quantum Algorithms for Nonlinear Differential Equations

Applied quantum algorithms for solving nonlinear differential equations (HHL applications).

Jul 2025

WOMANIUM

Quantum Computing & Programming Diploma - QWorld's Bronze Qiskit Program

Completed comprehensive training in quantum computing fundamentals and programming with Qiskit.

Mar 2025

EOI Business School

Technology from Scratch: Semiconductors

Analyzed chip fabrication, photolithography, and silicon logic gate design.

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Ready to architect the future?

Whether it's quantum algorithms, advanced orbital simulations, or high-performance architectural systems, my channels are open for collaboration and innovation.

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