LaTeX Research Posters
Overview
Research posters are a critical medium for scientific communication at conferences, symposia, and academic events. This skill provides comprehensive guidance for creating professional, visually appealing research posters using LaTeX packages. Generate publication-quality posters with proper layout, typography, color schemes, and visual hierarchy.
When to Use This Skill
This skill should be used when:
- Creating research posters for conferences, symposia, or poster sessions
- Designing academic posters for university events or thesis defenses
- Preparing visual summaries of research for public engagement
- Converting scientific papers into poster format
- Creating template posters for research groups or departments
- Designing posters that comply with specific conference size requirements (A0, A1, 36×48", etc.)
- Building posters with complex multi-column layouts
- Integrating figures, tables, equations, and citations in poster format
AI-Powered Visual Element Generation
STANDARD WORKFLOW: Generate ALL major visual elements using AI before creating the LaTeX poster.
This is the recommended approach for creating visually compelling posters:
- Plan all visual elements needed (title, intro, methods, results, conclusions)
- Generate each element using scientific-schematics or Nano Banana Pro
- Assemble generated images in the LaTeX template
- Add text content around the visuals
Target: 60-70% of poster area should be AI-generated visuals, 30-40% text.
Hard limits (do not exceed)
These are limits, not guidelines. Violating them is the single most common cause of a
failed poster. Full reasoning, per-graphic-type tables, and worked examples are in
references/ai_graphics_for_posters.md.
| Constraint |
Limit |
| Elements per AI-generated graphic |
3-4 maximum (3 ideal) |
| Words per graphic |
10 maximum |
| White space per graphic |
50% minimum (60% better) |
| Key numbers / metrics |
120pt+ |
| Labels |
80pt+ |
| Body text on the poster |
24pt+ |
| Content sections (A0) |
5-6 maximum |
| Total words on the poster |
300-800 |
| Figure width |
0.85\linewidth, never 1.0 |
Every graphic prompt must include: POSTER FORMAT for A0, an explicit element or word
count (ONLY 3 icons, 3 words total), a font size (GIANT (120pt+)), 60% white space,
and a viewing distance (readable from 10-12 feet).
Two mandatory review gates. Skipping either is how unreadable posters happen:
-
Before generating — for each planned graphic, confirm it is 3-4 items, one message,
under 10 words, and not a 5+ stage workflow. If not, split it into several graphics.
-
After generating, before assembly — open each figure at 25% zoom. All text readable,
4 or fewer elements, 50%+ white space, understandable in 2 seconds. Any failure means
regenerate or split. Do not assemble a poster from figures that failed.
Patterns that always fail: 7-stage workflow, timeline with annual milestones,
3 case studies in one graphic, comparison of 5+ methods, architecture with all layers.
Collapse each to 3 high-level items, or make several separate graphics.
Overflow is an error, not a warning. After compiling, run grep -i overfull poster.log
and inspect all four edges at 100% zoom. See
references/compilation_and_quality_control.md.
Scientific Schematics Integration
For detailed guidance on creating schematics, refer to the scientific-schematics skill documentation.
Key capabilities:
- Nano Banana Pro automatically generates, reviews, and refines diagrams
- Creates publication-quality images with proper formatting
- Ensures accessibility (colorblind-friendly, high contrast)
- Supports iterative refinement for complex diagrams
Core Capabilities
Three poster packages are supported — beamerposter (Beamer syntax, institutional
themes), tikzposter (modern, colorful, flexible), and baposter (structured
multi-column). Package comparison, layout and grid systems, design principles, standard
sizes, per-package templates, figure and image integration, color schemes, typography,
and QR codes are all documented in
references/latex_poster_reference.md.
Reusable per-section content patterns, accessibility requirements, and presentation-day
guidance are in
references/poster_patterns_and_presentation.md.
Workflow for Poster Creation
Stage 1: Planning and Content Development
-
Determine poster requirements:
- Conference size specifications (A0, 36×48", etc.)
- Orientation (portrait vs. landscape)
- Submission deadlines and format requirements
-
Develop content outline:
- Identify 1-3 core messages
- Select key figures (typically 3-6 main visuals)
- Draft concise text for each section (bullet points preferred)
- Aim for 300-800 words total
-
Choose LaTeX package:
- beamerposter: If familiar with Beamer, need institutional themes
- tikzposter: For modern, colorful designs with flexibility
- baposter: For structured, professional multi-column layouts
Stage 2: Generate Visual Elements (AI-Powered)
CRITICAL: Generate SIMPLE figures with MINIMAL content. Each graphic = ONE message.
Content limits:
- Maximum 4-5 elements per graphic
- Maximum 15 words total per graphic
- 50% white space minimum
- GIANT fonts (80pt+ for labels, 120pt+ for key numbers)
-
Create figures directory:
mkdir -p figures
-
Generate SIMPLE visual elements:
# Introduction - ONLY 3 icons/elements
python scripts/generate_schematic.py "POSTER FORMAT for A0. SIMPLE visual with ONLY 3 elements: [icon1] [icon2] [icon3]. ONE word labels (80pt+). 50% white space. Readable from 8 feet." -o figures/intro.png
# Methods - ONLY 4 steps maximum
python scripts/generate_schematic.py "POSTER FORMAT for A0. SIMPLE flowchart with ONLY 4 boxes: STEP1 → STEP2 → STEP3 → STEP4. GIANT labels (100pt+). 50% white space. NO sub-steps." -o figures/methods.png
# Results - ONLY 3 bars/comparisons
python scripts/generate_schematic.py "POSTER FORMAT for A0. SIMPLE chart with ONLY 3 bars. GIANT percentages ON bars (120pt+). NO axis, NO legend. 50% white space." -o figures/results.png
# Conclusions - EXACTLY 3 items with GIANT numbers
python scripts/generate_schematic.py "POSTER FORMAT for A0. EXACTLY 3 key findings: '[NUMBER]' (150pt) '[LABEL]' (60pt) for each. 50% white space. NO other text." -o figures/conclusions.png
-
Review generated figures - check for overflow:
-
View at 25% zoom: All text still readable?
-
Count elements: More than 5? → Regenerate simpler
-
Check white space: Less than 40%? → Add "60% white space" to prompt
-
Font too small?: Add "EVEN LARGER" or increase pt sizes
-
Still overflowing?: Reduce to 3 elements instead of 4-5
Stage 3: Design and Layout
-
Select or create template:
- Start with provided templates in
assets/
- Customize color scheme to match branding
- Configure page size and orientation
-
Design layout structure:
- Plan column structure (2, 3, or 4 columns)
- Map content flow (typically left-to-right, top-to-bottom)
- Allocate space for title (10-15%), content (70-80%), footer (5-10%)
-
Set typography:
- Configure font sizes for different hierarchy levels
- Ensure minimum 24pt body text
- Test readability from 4-6 feet distance
Stage 4: Content Integration
-
Create poster header:
- Title (concise, descriptive, 10-15 words)
- Authors and affiliations
- Institution logos (high-resolution)
- Conference logo if required
-
Integrate AI-generated figures:
- Add all figures from Stage 2 to appropriate sections
- Use
\includegraphics with proper sizing
- Ensure figures dominate each section (visuals first, text second)
- Center figures within blocks for visual impact
-
Add minimal supporting text:
- Keep text minimal and scannable (300-800 words total)
- Use bullet points, not paragraphs
- Write in active voice
- Text should complement figures, not duplicate them
-
Add supplementary elements:
- QR codes for supplementary materials
- References (cite key papers only, 5-10 typical)
- Contact information and acknowledgments
Stage 5: Refinement and Testing
-
Review and iterate:
- Check for typos and errors
- Verify all figures are high resolution
- Ensure consistent formatting
- Confirm color scheme works well together
-
Test readability:
- Print at 25% scale and read from 2-3 feet (simulates poster from 8-12 feet)
- Check color on different monitors
- Verify QR codes function correctly
- Ask colleague to review
-
Optimize for printing:
- Embed all fonts in PDF
- Verify image resolution
- Check PDF size requirements
- Include bleed area if required
Stage 6: Compilation and Delivery
-
Compile final PDF:
pdflatex poster.tex
# Or for better font support:
lualatex poster.tex
-
Verify output quality:
- Check all elements are visible and correctly positioned
- Zoom to 100% and inspect figure quality
- Verify colors match expectations
- Confirm PDF opens correctly on different viewers
-
Prepare for printing:
- Export as PDF/X-1a if required
- Save backup copies
- Get test print on regular paper first
- Order professional printing 2-3 days before deadline
-
Create supplementary materials:
- Save PNG/JPG version for social media
- Create handout version (8.5×11" summary)
- Prepare digital version for email sharing
Integration with Other Skills
This skill works effectively with:
-
Scientific Schematics: CRITICAL - Use for generating all poster diagrams and flowcharts
-
Generate Image / Nano Banana Pro: For stylized graphics, conceptual illustrations, and summary visuals
-
Scientific Writing: For developing poster content from papers
-
Literature Review: For contextualizing research
-
Data Analysis: For creating result figures and charts
Recommended workflow: Always use scientific-schematics and generate-image skills BEFORE creating the LaTeX poster to generate all visual elements.
Common Pitfalls to Avoid
AI-Generated Graphics Mistakes (MOST COMMON):
- ❌ Too many elements in one graphic (10+ items) → Keep to 3-5 max
- ❌ Text too small in AI graphics → Specify "GIANT (100pt+)" or "HUGE (150pt+)"
- ❌ Too much detail in prompts → Use "SIMPLE" and "ONLY X elements"
- ❌ No white space specification → Add "50% white space" to every prompt
- ❌ Complex flowcharts with 8+ steps → Limit to 4-5 steps maximum
- ❌ Comparison charts with 6+ items → Limit to 3 items maximum
- ❌ Key findings with 5+ metrics → Show only top 3
Fixing Overflow in AI Graphics:
If your AI-generated graphics are overflowing or have small text:
- Add "SIMPLER" or "ONLY 3 elements" to prompt
- Increase font sizes: "150pt+" instead of "80pt+"
- Add "60% white space" instead of "50%"
- Remove sub-details: "NO sub-steps", "NO axis labels", "NO legend"
- Regenerate with fewer elements
Design Mistakes:
- ❌ Too much text (over 1000 words)
- ❌ Font sizes too small (under 24pt body text)
- ❌ Low-contrast color combinations
- ❌ Cluttered layout with no white space
- ❌ Inconsistent styling across sections
- ❌ Poor quality or pixelated images
Content Mistakes:
- ❌ No clear narrative or message
- ❌ Too many research questions or objectives
- ❌ Overuse of jargon without definitions
- ❌ Results without context or interpretation
- ❌ Missing author contact information
Technical Mistakes:
- ❌ Wrong poster dimensions for conference requirements
- ❌ RGB colors sent to CMYK printer (color shift)
- ❌ Fonts not embedded in PDF
- ❌ File size too large for submission portal
- ❌ QR codes too small or not tested
Best Practices:
- ✅ Generate SIMPLE AI graphics with 3-5 elements max
- ✅ Use GIANT fonts (100pt+) for key numbers in graphics
- ✅ Specify "50% white space" in every AI prompt
- ✅ Follow conference size specifications exactly
- ✅ Test print at reduced scale before final printing
- ✅ Use high-contrast, accessible color schemes
- ✅ Keep text minimal and highly scannable
- ✅ Include clear contact information and QR codes
- ✅ Proofread carefully (errors are magnified on posters!)
Package Installation
Ensure required LaTeX packages are installed:
# For TeX Live (Linux/Mac)
tlmgr install beamerposter tikzposter baposter
# For MiKTeX (Windows)
# Packages typically auto-install on first use
# Additional recommended packages
tlmgr install qrcode graphics xcolor tcolorbox subcaption
Scripts and Automation
Helper scripts available in scripts/ directory:
-
review_poster.sh: Poster review and validation
-
generate_schematic.py: Generate scientific diagrams and schematics
References
-
references/ai_graphics_for_posters.md: full AI
graphic rules, per-type limits, worked prompt examples, and the review gates.
-
references/latex_poster_reference.md: packages,
layout, design, sizes, templates, figures, color, typography, QR codes.
-
references/compilation_and_quality_control.md:
compilation engines and the complete pre-print QC procedure.
-
references/poster_patterns_and_presentation.md:
content patterns, accessibility, presentation tips.
-
references/latex_poster_packages.md: detailed
comparison of beamerposter, tikzposter, and baposter with examples.
-
references/poster_layout_design.md: layout
principles, grid systems, and visual flow.
-
references/poster_design_principles.md:
typography, color theory, visual hierarchy, and accessibility.
-
references/poster_content_guide.md: content
organization, writing style, and section-specific guidance.
Templates
Ready-to-use poster templates in assets/ directory:
- beamerposter templates (classic, modern, colorful)
- tikzposter templates (default, rays, wave, envelope)
- baposter templates (portrait, landscape, minimal)
- Example posters from various scientific disciplines
- Color scheme definitions and institutional templates
Load these templates and customize for your specific research and conference requirements.